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Our lives depend on a handful of natural resources.

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But they're not the ones you think they are.

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Forget oil, coal and gas.

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Today, we depend on a new set of superelements

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with obscure names like indium and rhenium.

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Their properties are so bizarre, they may as well be alien technology.

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There's not a scratch on it!

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Hotter, hotter!

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No problem whatsoever.

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These superelements are driving innovation,

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everything from smartphones to MRI scanners.

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That's the magic stuff.

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But there's a problem.

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They're rare, and they're already running out.

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The stuff that makes smartphones work could be gone in a decade.

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The mineral we rely on to feed the world

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is mostly found in just one country.

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We are reaching the limits of what our planet can provide.

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We can't rely on recycling to rescue us.

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To fix the future, we might have to mine in space.

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We'll be able to do it in the next 10 or 20 years.

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So in my lifetime, we could be mining space?

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So what are these superelements?

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Why do we need them so badly?

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And what can we do to save them?

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JAUNTY MUSIC PLAYS

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There is one object that contains more superelements than almost any other...

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The smartphone.

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A billion were sold last year.

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They're our phones, our cameras, our sat navs,

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our notebooks, our diaries.

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You can watch a film on them, you can book a flight on them,

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you can check your bank balance on them.

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You can even...

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..film a whole BBC documentary on them.

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But for a material scientist like me,

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it's what's inside these smartphones that's so impressive.

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To prove just how good superelements have made our phones,

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we're going to film this programme on one.

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There's a lot of amazing stuff in a smartphone,

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but I'm going to reveal what I think is the single most important

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ingredient in our phones.

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It's in every single smartphone, it's essential to how they work,

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and yet I'll guarantee you've never heard of it.

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First, I've got to get into one, and that's surprisingly difficult.

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So I've equipped myself with a range of precision tools.

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The question is, which one will get me inside the phone?

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They're not really designed to be taken apart, though.

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This, however, will really do the trick.

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MUSIC: Ride Of The Valkyries by Wagner

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Hmm. Quite slippery, these things. Hold on.

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Now, there we go.

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Microphone.

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Look at all these little processors,

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doing all the processing of your speech.

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There's loads of different metals inside.

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Silver, copper and platinum to start with.

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But that's not all.

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That's what I'm after there.

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That's gold.

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There's 300 times more gold in a kilo of smartphones than a kilo of gold ore.

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Your average smartphone contains

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over half the elements on the planet.

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There's lithium and cobalt in the battery,

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lanthanum and yttrium in the screen.

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Terbium and dysprosium make the microphone.

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There's even arsenic in the silicon chip.

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Each element has a unique role to play,

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making our phones slimmer, smarter and more powerful.

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But one stands out from the rest.

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A rare metal with a magical property.

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To understand how critical it is,

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cast your mind back to what phones used to look like.

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Bricks covered in buttons.

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The phones got smaller and smarter,

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and some of them could even connect to the internet.

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But they still needed a keyboard, and that limited their powers.

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Then some clever scientists discovered the superpowers

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of an element called...

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And here it is, indium.

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Now, one of the tricks for understanding this metal is to have a bite

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because it's so soft, you can chew it.

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Mmm. Not a good substitute for chewing gum,

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but nevertheless, an amazing thing.

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But not as amazing as what I'm about to show you.

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If I take indium and I do this, watch what happens.

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Amazingly, it can turn into a liquid.

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But that's just the start of

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indium's weird and wonderful properties.

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Now, if I take this liquid and

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paint a line on this piece of paper,

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I've got a light bulb here,

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and there's two wires connecting it

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to this power source.

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When there's a circuit,

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the light comes on.

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Now the question is,

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will this liquid metal I've just

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created conduct electricity?

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And the answer is...

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Yes!

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Brilliant.

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So we have a soft metal that

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can turn into a liquid that conducts electricity.

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Not bad.

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But it has one more astonishing property.

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The thing that makes it an absolutely vital part

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of every smartphone.

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Mix it with tin and oxygen, and you get indium tin oxide,

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a transparent electrical conductor.

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And that's how you make

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the touch-screen.

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They appear so simple, even a toddler can master them.

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But touchscreens are revolutionary.

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Before touchscreens,

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it was hard for smartphones to be as complex as computers because you had

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to fit lots of tiny buttons into a small space.

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But with a touch-screen, your finger is a keyboard and a mouse in one.

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And so the whole screen is able

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to control something as complex as a computer.

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And I can just scroll around like this...

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The screen itself is a conductor,

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and so is human skin.

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It works like magic.

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AUDIENCE CHEERS

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Ten years ago, Apple exploited indium's incredible properties

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to create the first touch-screen phone you could control with your finger.

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And we are calling it...

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..iPhone.

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The smartphone as we know it was born.

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Today, Apple is...

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An entire new industry was created.

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But although the touch-screen had solved one problem,

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it had created a new one.

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Demand for indium soared.

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And it's not that easy to get hold of.

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In nature, indium is found tightly bound to other metals,

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most commonly zinc.

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To coax it out of zinc ore, you have to dissolve the rock in acid...

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..then bake the acid in a furnace,

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then mix a precise cocktail of other chemicals to finally extract

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a minuscule amount of pure indium.

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Touch-screen technology has become critical to our economy.

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The app industry alone earns more money than the Hollywood box office.

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But if you do the maths, you find a problem.

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There's only a tiny sprinkling of indium in every smartphone,

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approximately 0.02g.

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But we buy a billion smartphones a year.

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That's a big number.

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If we add in all the other uses of indium like tablets,

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other flatscreen devices and all the other electronics that use indium,

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we get a number of 700 tonnes of indium that we need every year.

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But in 2008,

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the US Geological Survey estimated

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that there were 16,000 tonnes available.

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Now, if that was right, at the rate of 700 tonnes per year,

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we would be running out of indium in the next decade.

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Then again, maybe not, because as it gets scarce, the price goes up,

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and that encourages companies to go out looking for more.

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The problem is, that takes time.

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And it's a bottleneck that could be the stuff of nightmares.

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Imagine young people of the future unable to have phones.

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Unthinkable!

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JAUNTY MUSIC PLAYS

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Indium isn't the only element that has superpowers.

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In fact, I think we're living through a revolution.

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We're uncovering the superpowers of

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ever more rare and unusual ingredients.

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And they have changed virtually all aspects of our lives.

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They've even helped make our holidays more affordable.

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The first time I went on a flight, it was 1977.

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I was eight years old.

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I was with my family.

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We were on holiday to the Greek island of Crete.

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It was great.

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It was the first time I experienced a really genuinely sunny beach holiday.

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But the flights cost my parents a small fortune.

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I mean, flying anywhere in those days was really expensive.

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Now, I can fly to Crete for less than the cost of a tank of petrol.

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Lots of factors have contributed to cheaper air travel -

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changes in government taxes, more competition between airlines,

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but a big part of it is down to this material, rhenium.

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I know it looks really dull,

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but it's one of the rarest and most expensive elements on the planet.

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This piece alone is worth £100.

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Rhenium is a relatively recent addition to the periodic table.

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It was discovered in 1925

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by the brilliant German chemist, Ida Noddack.

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The new element was incredibly tough and durable,

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but it also had a superpower that would one day lead to

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cheaper air travel for all of us.

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To demonstrate what rhenium can do,

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I've invited a group of volunteers to bring an object that's very precious

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to them up to the roof of this tall building.

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Oh, right. Now, tell me about this ring.

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That's from New York in Tiffany's.

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- Whoa!
- Yeah.
- Did someone special give it to you?

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- Yeah, her dad.
- Oh!

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I'm going to dangle the ring off the roof over the water

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and then burn the wire with a blowtorch.

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- Are you getting nervous about this ring?
- Yeah!

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But I'm doing it.

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Five storeys up.

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It's going red hot.

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Getting white hot.

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Carrie, stop it!

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Carrie, stop him!

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Carrie! Stop him.

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Oh, my God. No problem whatsoever!

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Isn't that amazing?

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Rhenium's superpower is heat resistance.

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This stuff is phenomenal.

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You could plunge it into molten steel and it wouldn't melt.

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You could chuck it into a volcano and pull it out unscathed.

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It's like alien technology.

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And its powers haven't gone unnoticed.

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Over 70% of the rhenium mined each year is used to make jet engines.

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Much of it ends up in Derby at the home of Rolls-Royce.

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PIANO MUSIC PLAYS

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They make the most hi-tech aircraft engines in the world.

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And at the heart of each engine lies a disc of small,

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but extraordinary turbine blades.

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This little blade has to withstand extreme temperature and stress,

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and no ordinary metal is up to the job.

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It's made of a special alloy with over ten different elements.

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But one of those is named in the industry as magic dust,

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and that's rhenium.

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Aircraft engines work by sucking in air,

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compressing it and then exploding it with fuel to create a ferocious gas jet.

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The jet hits the disc of turbine blades head-on,

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heating them to over 1,000 degrees

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and spinning them at 10,000 revolutions per minute.

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The blades turn the compressors, generating thrust.

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No ordinary material could withstand such an extreme environment.

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But the turbine blades take these conditions in their stride.

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Rhenium's astonishing properties allow engines to

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operate at extremely high temperatures.

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And that means you get maximum thrust from minimum fuel.

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Rhenium saves each plane millions of pounds per year in fuel,

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and some of that saving filters down to us.

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Fuel efficiency is one of the main reasons why flights are cheaper today than when I was a kid.

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Rhenium has helped cut emissions and make flights more affordable.

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It's not a dull, boring metal.

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Its superhero properties make it extremely precious.

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So where do we get this material with such extraordinary properties?

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The rubbish.

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More precisely, it's a waste product from copper mining.

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They used to just chuck it away.

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Chile has most of the world's copper,

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so they also produce most of the world's rhenium.

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But it's such a rare element,

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a tonne of copper ore contains just

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half a gram of rhenium.

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All the rhenium mined in a year would fit in your living room.

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By exploiting rhenium's superpowers,

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planes burn less fuel,

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and that's better for us and the planet.

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But by solving one problem, we've created another.

259
00:16:56,560 --> 00:16:58,760
We've got used to cheaper air travel.

260
00:16:58,760 --> 00:17:00,680
We love it!

261
00:17:00,680 --> 00:17:04,080
As the price falls, demand rises.

262
00:17:04,080 --> 00:17:06,960
So although our planes are fuel-efficient,

263
00:17:06,960 --> 00:17:09,600
we're still burning a lot of fuel.

264
00:17:10,760 --> 00:17:13,800
And no matter how advanced we make our jet engines,

265
00:17:13,800 --> 00:17:16,040
they rely on an ancient principle...

266
00:17:19,440 --> 00:17:21,520
..burning fuel to release energy.

267
00:17:23,480 --> 00:17:27,720
Our cave-dwelling ancestors first learned how to exploit fire,

268
00:17:27,720 --> 00:17:30,680
and we've been burning stuff ever since...

269
00:17:34,440 --> 00:17:40,080
More and more and more of it to meet our energy needs.

270
00:17:40,080 --> 00:17:43,240
It's polluting and it's causing climate change.

271
00:17:45,680 --> 00:17:50,440
If there's one process that's desperately in need of a superelement,

272
00:17:50,440 --> 00:17:52,040
it's the production of energy.

273
00:17:57,760 --> 00:18:00,600
The answer could lie in magnets.

274
00:18:01,680 --> 00:18:05,800
Not just any magnets - magnets made from a superelement.

275
00:18:08,680 --> 00:18:11,600
To demonstrate their phenomenal strength,

276
00:18:11,600 --> 00:18:15,200
I need some volunteers and an audience.

277
00:18:15,200 --> 00:18:18,600
So I've taken over a corner at the At-Bristol Science Centre.

278
00:18:21,240 --> 00:18:24,920
I'm going to see if I can amaze them with my supermagnets.

279
00:18:26,240 --> 00:18:28,040
First up, an ordinary magnet.

280
00:18:29,840 --> 00:18:33,720
I need a volunteer to do a tug-of-war with me.

281
00:18:33,720 --> 00:18:36,280
- What's your name?
- Brianna.
- Brianna, nice to meet you.

282
00:18:36,280 --> 00:18:37,960
Put on your fridge, a fridge magnet.

283
00:18:39,080 --> 00:18:40,120
Ready?

284
00:18:40,120 --> 00:18:43,720
AUDIENCE: Three, two, one!

285
00:18:43,720 --> 00:18:45,720
OK. No problem.

286
00:18:45,720 --> 00:18:48,040
The special neodymium magnet.

287
00:18:48,040 --> 00:18:51,400
Next, a magnet made from a superelement.

288
00:18:51,400 --> 00:18:53,920
- AUDIENCE: One!
- Come on, Brianna.

289
00:18:53,920 --> 00:18:55,840
Yes!

290
00:18:55,840 --> 00:18:57,640
No chance.

291
00:18:57,640 --> 00:18:59,800
That's one strong magnet! How strong though?

292
00:18:59,800 --> 00:19:03,080
Now the ultimate test - will it hold my weight?

293
00:19:03,080 --> 00:19:04,120
What do you think?

294
00:19:10,920 --> 00:19:12,520
Pull your feet!

295
00:19:12,520 --> 00:19:14,400
OK.

296
00:19:14,400 --> 00:19:15,480
AUDIENCE: Yay!

297
00:19:15,480 --> 00:19:16,600
Whoa!

298
00:19:16,600 --> 00:19:18,760
AUDIENCE LAUGHS

299
00:19:18,760 --> 00:19:21,800
I've reached the limit of the little magnet's strength.

300
00:19:21,800 --> 00:19:23,440
That was your fault, you guys!

301
00:19:24,680 --> 00:19:27,440
'But if we use larger supermagnets...'

302
00:19:27,440 --> 00:19:29,920
They're like a wild animal in this box.

303
00:19:29,920 --> 00:19:32,640
'..we can even defy gravity.'

304
00:19:32,640 --> 00:19:34,760
Oh, yeah, that's a good idea. Your hand...

305
00:19:34,760 --> 00:19:36,720
AUDIENCE: Ooh!

306
00:19:36,720 --> 00:19:37,880
And how are we doing?

307
00:19:39,040 --> 00:19:40,760
You're levitating, man!

308
00:19:40,760 --> 00:19:42,960
How does that feel? Yeah!

309
00:19:42,960 --> 00:19:44,320
AUDIENCE APPLAUDS

310
00:19:45,600 --> 00:19:49,000
The superelement in these magnets is called...

311
00:19:49,000 --> 00:19:50,840
Neodymium.

312
00:19:53,120 --> 00:19:56,320
It makes the strongest permanent magnets known.

313
00:19:58,200 --> 00:20:02,480
And if you're wondering what this all has to do with generating electricity,

314
00:20:02,480 --> 00:20:03,520
it's simple.

315
00:20:07,120 --> 00:20:10,400
If you spin a magnet inside a coil of wire,

316
00:20:10,400 --> 00:20:12,040
you generate an electric current.

317
00:20:13,120 --> 00:20:15,960
Michael Faraday first discovered this in 1831.

318
00:20:22,080 --> 00:20:25,920
And ever since, we've been burning stuff to drive the turbines that

319
00:20:25,920 --> 00:20:27,600
make the magnets spin.

320
00:20:28,720 --> 00:20:34,680
Oil, coal, gas, you name it.

321
00:20:34,680 --> 00:20:37,960
To try to reduce the amount of stuff we burn,

322
00:20:37,960 --> 00:20:40,760
we've come up with new ways to spin the magnets.

323
00:20:42,240 --> 00:20:44,040
Like wind turbines.

324
00:20:47,760 --> 00:20:51,160
This is the UK's largest onshore wind farm.

325
00:20:53,360 --> 00:21:00,320
The 215 turbines generate enough electricity to power 300,000 homes.

326
00:21:03,440 --> 00:21:06,920
But keeping the mighty blades turning can be a problem.

327
00:21:07,920 --> 00:21:11,360
These complex machines are prone to breaking down.

328
00:21:15,000 --> 00:21:18,200
We're out here, it's wild and the weather can be extreme.

329
00:21:18,200 --> 00:21:20,080
It's quite extreme today!

330
00:21:20,080 --> 00:21:24,120
And having a simple thing that you don't need to come out and repair,

331
00:21:24,120 --> 00:21:26,840
- that is a big deal, right? 
- That's right.

332
00:21:26,840 --> 00:21:31,800
As you know, we're increasingly putting our wind turbines offshore.

333
00:21:31,800 --> 00:21:35,040
So where we can make things more reliable,

334
00:21:35,040 --> 00:21:37,520
where we can stop things from failing in the first place,

335
00:21:37,520 --> 00:21:40,880
it means we don't need to stop the turbines to go and fix them.

336
00:21:44,440 --> 00:21:46,600
The weakest link is the gearbox.

337
00:21:48,720 --> 00:21:53,880
A complex set of cogs that steps up the slow rotational speed of the blades

338
00:21:53,880 --> 00:21:57,120
so it's fast enough to generate maximum electricity.

339
00:21:59,080 --> 00:22:05,040
The gearbox has to be replaced more frequently than any other part of the turbine.

340
00:22:06,680 --> 00:22:11,240
So how are new materials revolutionising the design of turbines?

341
00:22:11,240 --> 00:22:12,560
So, in that generator...

342
00:22:13,800 --> 00:22:17,640
..we're now starting to use some of the neodymium magnets.

343
00:22:17,640 --> 00:22:21,360
And those are magnets which are really compact,

344
00:22:21,360 --> 00:22:24,240
dense sources of the magnetic field.

345
00:22:24,240 --> 00:22:27,960
They're able to produce the field in a compact way.

346
00:22:27,960 --> 00:22:31,520
They're able to do it in an efficient way and they're actually...

347
00:22:31,520 --> 00:22:33,160
which is really important,

348
00:22:33,160 --> 00:22:35,360
they're able to do it in a really reliable way.

349
00:22:36,600 --> 00:22:41,360
Neodymium magnets are so powerful that they can generate an enormous

350
00:22:41,360 --> 00:22:45,160
electrical current even at slow rotational speeds.

351
00:22:45,160 --> 00:22:49,560
This means the turbine blades can drive the generator directly.

352
00:22:49,560 --> 00:22:52,120
There's no need for a gearbox.

353
00:22:52,120 --> 00:22:56,080
The turbine is more efficient and less prone to breakdown.

354
00:22:57,120 --> 00:22:59,360
I've got this neodymium magnet here.

355
00:22:59,360 --> 00:23:01,120
So what we're saying is that in the future,

356
00:23:01,120 --> 00:23:04,400
wind turbines will have a big hunk of this up there, right?

357
00:23:04,400 --> 00:23:05,920
In fact, quite a few hunks.

358
00:23:05,920 --> 00:23:11,160
A big wind turbine might use 100 of these in just one part of the machine.

359
00:23:13,400 --> 00:23:17,400
Wind turbines create clean energy without the need to burn stuff.

360
00:23:19,800 --> 00:23:24,240
But once again, solving one problem leads to another.

361
00:23:24,240 --> 00:23:25,640
It's not always windy,

362
00:23:25,640 --> 00:23:29,400
so we need a way to store surplus energy from the windy days.

363
00:23:31,000 --> 00:23:34,200
The answer could lie in another superelement...

364
00:23:35,160 --> 00:23:36,200
Lithium.

365
00:23:37,840 --> 00:23:39,720
This is lithium.

366
00:23:39,720 --> 00:23:41,840
First discovered in 1817,

367
00:23:41,840 --> 00:23:44,200
it's the third element of the periodic table

368
00:23:44,200 --> 00:23:45,960
and it has unique electrochemical

369
00:23:45,960 --> 00:23:48,720
properties that make it great for batteries.

370
00:23:48,720 --> 00:23:53,240
And when it comes to energy storage, this stuff is a game-changer.

371
00:23:53,240 --> 00:23:54,960
ORCHESTRAL MUSIC PLAYS

372
00:24:01,800 --> 00:24:03,520
In the Nevada desert,

373
00:24:03,520 --> 00:24:08,760
construction of the world's largest factory is nearing completion.

374
00:24:08,760 --> 00:24:11,040
It will make just one thing -

375
00:24:11,040 --> 00:24:13,920
lithium batteries for Tesla electric cars.

376
00:24:20,080 --> 00:24:21,600
Lithium is light,

377
00:24:21,600 --> 00:24:25,120
so you can make a powerful battery that doesn't weigh a tonne.

378
00:24:27,960 --> 00:24:33,560
The same technology is now being developed to store energy from renewable power plants.

379
00:24:35,800 --> 00:24:38,040
It could solve our energy crisis.

380
00:24:39,320 --> 00:24:41,600
But it's a potential new bottleneck...

381
00:24:42,600 --> 00:24:45,960
..because we're going to need an awful lot of lithium.

382
00:24:48,720 --> 00:24:50,480
THUNDERCLAP

383
00:24:53,640 --> 00:24:57,440
Half of the world's lithium is found in just one place...

384
00:24:59,000 --> 00:25:01,720
..the Salar de Uyuni salt flats in Bolivia.

385
00:25:05,600 --> 00:25:07,480
The problem is getting it out.

386
00:25:08,800 --> 00:25:12,800
Mining here is politically and environmentally controversial.

387
00:25:15,160 --> 00:25:18,360
But at least with lithium, we can see the problem coming.

388
00:25:22,600 --> 00:25:28,240
Shortages of other superelements have taken us completely by surprise,

389
00:25:28,240 --> 00:25:30,840
none more so than helium.

390
00:25:36,040 --> 00:25:39,480
Helium is famous for making balloons much more fun.

391
00:25:40,960 --> 00:25:44,160
But believe it or not, helium is in short supply,

392
00:25:44,160 --> 00:25:47,120
and it's become far more important than you might think.

393
00:25:49,560 --> 00:25:52,880
IN SQUEAKY VOICE: Using helium for balloons is no laughing matter.

394
00:25:58,320 --> 00:26:00,120
Up until the 1980s,

395
00:26:00,120 --> 00:26:04,360
helium stocks were mainly a concern for people who owned airships

396
00:26:04,360 --> 00:26:05,440
or space rockets.

397
00:26:05,440 --> 00:26:07,040
Yeah, you can hold that now.

398
00:26:07,040 --> 00:26:09,680
But then, along came a new innovation.

399
00:26:13,440 --> 00:26:14,920
The MRI scanner.

400
00:26:18,360 --> 00:26:23,160
MRI can see inside our bodies with clarity like never before,

401
00:26:23,160 --> 00:26:25,840
and without the need for harmful x-rays.

402
00:26:28,440 --> 00:26:32,840
It revolutionised the diagnosis of a range of conditions

403
00:26:32,840 --> 00:26:34,680
from brain injuries to cancer.

404
00:26:35,920 --> 00:26:40,200
And it relies on the extraordinary properties of helium.

405
00:26:47,520 --> 00:26:50,040
Helium is weird.

406
00:26:51,600 --> 00:26:55,960
For starters, it can become colder than almost anything else

407
00:26:55,960 --> 00:26:57,640
in the universe.

408
00:26:58,680 --> 00:27:02,840
Lancaster University is one of the few places with the right kit

409
00:27:02,840 --> 00:27:03,920
to make it that cold.

410
00:27:06,960 --> 00:27:09,720
Now, we've got our helium in this tube.

411
00:27:09,720 --> 00:27:13,680
It's at minus 269 degrees centigrade.

412
00:27:13,680 --> 00:27:16,160
At that temperature, it's a liquid.

413
00:27:16,160 --> 00:27:18,440
That's obviously a very cold temperature,

414
00:27:18,440 --> 00:27:20,480
but I'm about to make it colder still,

415
00:27:20,480 --> 00:27:24,880
and by doing so, welcome you into the very, very weird world of helium.

416
00:27:28,640 --> 00:27:33,760
When helium gets really cold, strange things start to happen.

417
00:27:35,800 --> 00:27:39,160
First, it boils ferociously -

418
00:27:39,160 --> 00:27:43,520
not what you'd expect from something really cold.

419
00:27:43,520 --> 00:27:45,440
It's getting colder,

420
00:27:45,440 --> 00:27:46,480
and colder.

421
00:27:48,000 --> 00:27:49,760
Wait for this, though. Wait, wait...

422
00:27:50,960 --> 00:27:52,640
There! Did you see that?

423
00:27:52,640 --> 00:27:54,640
It went from boiling to absolutely still.

424
00:27:56,080 --> 00:28:00,960
It is now no longer governed by the classical rules of physics.

425
00:28:00,960 --> 00:28:03,440
It's now governed by quantum mechanics.

426
00:28:03,440 --> 00:28:06,880
It's a superfluid, and they are very weird.

427
00:28:06,880 --> 00:28:08,480
Let me show you what they can do.

428
00:28:11,200 --> 00:28:16,120
Superfluid helium can flow through solid materials.

429
00:28:16,120 --> 00:28:18,920
I've got more liquid helium here in a container,

430
00:28:18,920 --> 00:28:22,200
and it's kept in there by that stopper at the bottom, that red stuff.

431
00:28:23,640 --> 00:28:27,240
I can make it pass through the solid stopper.

432
00:28:29,480 --> 00:28:30,920
As I move it down...

433
00:28:31,920 --> 00:28:35,240
..towards the superfluid, it's getting colder and colder,

434
00:28:35,240 --> 00:28:37,520
and it's going to turn into a superfluid itself.

435
00:28:38,600 --> 00:28:42,720
Watch the stopper as I lower it towards the superfluid.

436
00:28:47,440 --> 00:28:49,920
There, you see?

437
00:28:49,920 --> 00:28:52,720
It's dripping through a solid material.

438
00:28:54,280 --> 00:28:57,600
That's one of the strange properties of superfluids.

439
00:28:57,600 --> 00:28:59,640
They can flow through solid materials.

440
00:29:00,760 --> 00:29:02,600
It just seems wrong.

441
00:29:02,600 --> 00:29:05,680
It goes against all the normal laws of physics

442
00:29:05,680 --> 00:29:08,120
that we, kind of, take for granted.

443
00:29:08,120 --> 00:29:09,760
It's just bonkers.

444
00:29:12,520 --> 00:29:15,960
A superfluid is a liquid that flows without friction.

445
00:29:18,120 --> 00:29:21,040
Think of a cup of tea. Once you stop stirring,

446
00:29:21,040 --> 00:29:23,360
the circulation slows because of friction.

447
00:29:24,440 --> 00:29:27,000
But a cup of superfluid would

448
00:29:27,000 --> 00:29:31,480
continue circulating until the end of time.

449
00:29:35,880 --> 00:29:40,600
And superfluids can transfer their magic powers to other materials.

450
00:29:42,840 --> 00:29:45,480
Bathed in superfluid helium,

451
00:29:45,480 --> 00:29:49,840
some electrical conductors become superconductors.

452
00:29:53,800 --> 00:29:56,280
When electricity passes through a wire,

453
00:29:56,280 --> 00:29:59,480
some of the electrons bump into the atoms that make up the wire.

454
00:30:02,120 --> 00:30:04,520
It's known as electrical resistance,

455
00:30:04,520 --> 00:30:07,200
and it means that some of the electricity is lost.

456
00:30:09,400 --> 00:30:12,360
But in some metals cooled by liquid helium,

457
00:30:12,360 --> 00:30:16,200
the electrons pass through with no resistance at all.

458
00:30:20,000 --> 00:30:24,320
So just as a superfluid can pass through a material with no resistance,

459
00:30:24,320 --> 00:30:28,440
so electricity can travel through a superconductor with no resistance.

460
00:30:28,440 --> 00:30:31,320
Now, that means no electricity gets lost.

461
00:30:32,600 --> 00:30:36,440
Superconducting wires deliver far more electrical energy

462
00:30:36,440 --> 00:30:38,440
than ordinary wires.

463
00:30:40,320 --> 00:30:44,800
And that's what MRI machines rely on to generate the powerful pulses of

464
00:30:44,800 --> 00:30:48,080
energy that are used to make images of our bodies.

465
00:30:49,640 --> 00:30:55,840
Each machine needs around 2,000 litres of liquid helium to keep it running.

466
00:30:57,520 --> 00:30:59,760
Considering that we give it away to children,

467
00:30:59,760 --> 00:31:02,600
you'd imagine that there's loads of it around.

468
00:31:03,600 --> 00:31:05,480
But helium is scarce.

469
00:31:09,840 --> 00:31:14,480
It's produced incredibly slowly from the radioactive decay of rocks

470
00:31:14,480 --> 00:31:15,680
deep underground.

471
00:31:16,840 --> 00:31:18,160
Over millions of years,

472
00:31:18,160 --> 00:31:22,200
the tiny trickle of gas builds up into large reservoirs.

473
00:31:25,400 --> 00:31:29,200
Algeria, Qatar and Russia have some.

474
00:31:29,200 --> 00:31:33,080
And in 2016, a new reservoir was discovered in Tanzania.

475
00:31:34,440 --> 00:31:38,640
But most of the world's helium comes from just one place...

476
00:31:38,640 --> 00:31:40,200
America's Midwest.

477
00:31:47,880 --> 00:31:53,240
America's Great Plains sit on top of a vast, natural helium store.

478
00:31:54,720 --> 00:32:00,000
For years, the Americans stockpiled it in a huge storage facility in Texas.

479
00:32:02,280 --> 00:32:07,000
During the Second World War, it was a strategic gas in airships.

480
00:32:08,000 --> 00:32:11,160
Later, it was used in the space race.

481
00:32:11,160 --> 00:32:14,280
But after that, they started selling it off cheaply.

482
00:32:17,920 --> 00:32:22,000
And now the world's largest helium reserve is almost empty.

483
00:32:25,280 --> 00:32:28,920
And to make matters worse, it's really hard to recycle.

484
00:32:31,040 --> 00:32:34,360
One of helium's more obvious but less exotic properties is that it's

485
00:32:34,360 --> 00:32:35,720
incredibly light.

486
00:32:35,720 --> 00:32:38,240
That's why helium balloons float in air.

487
00:32:38,240 --> 00:32:41,160
But it also makes it incredibly difficult to recycle helium,

488
00:32:41,160 --> 00:32:42,760
because once you let go of it...

489
00:32:43,920 --> 00:32:46,840
..well, it just keeps going up and up and up.

490
00:32:48,200 --> 00:32:51,200
Of course, eventually, the skin will pop,

491
00:32:51,200 --> 00:32:54,920
but the helium will keep going up and up to the edge of the atmosphere,

492
00:32:54,920 --> 00:32:56,840
into space and be gone forever.

493
00:32:59,720 --> 00:33:03,040
Mind you, not all superelements are rare.

494
00:33:03,040 --> 00:33:07,400
Some are plentiful, but they're only found in a few places.

495
00:33:08,400 --> 00:33:11,880
And the countries that own them aren't always willing to share.

496
00:33:13,040 --> 00:33:16,640
One of these materials is wanted by almost every nation,

497
00:33:16,640 --> 00:33:20,680
because its superhero strength is nothing short of miraculous.

498
00:33:22,720 --> 00:33:25,080
This is a magic ball.

499
00:33:25,080 --> 00:33:26,960
"What's magic about it?", you might ask.

500
00:33:26,960 --> 00:33:30,560
Well, it's shiny and smooth and very spherical,

501
00:33:30,560 --> 00:33:34,160
but what's really extraordinary is that it's virtually indestructible.

502
00:33:35,920 --> 00:33:39,720
Now, to a material scientist like me, that's a red rag to a bull.

503
00:33:39,720 --> 00:33:42,760
I can't resist trying to destroy it.

504
00:33:42,760 --> 00:33:43,800
JAUNTY MUSIC PLAYS

505
00:34:05,360 --> 00:34:06,960
Right.

506
00:34:06,960 --> 00:34:08,400
I'm going to have to escalate this.

507
00:34:33,440 --> 00:34:34,480
Incredible!

508
00:34:36,200 --> 00:34:37,320
There's not a mark on it.

509
00:34:37,320 --> 00:34:38,560
It's absolutely pristine.

510
00:34:39,840 --> 00:34:41,640
This material is called tungsten carbide.

511
00:34:41,640 --> 00:34:45,680
It's a compound of tungsten and carbon and it's very unusual

512
00:34:45,680 --> 00:34:49,480
because it's not brittle, and yet it's incredibly hard,

513
00:34:49,480 --> 00:34:52,000
and that's very unusual in a material.

514
00:34:52,000 --> 00:34:54,920
It's something that won't scratch, but won't break,

515
00:34:54,920 --> 00:34:56,960
even under the most extreme forces.

516
00:34:59,160 --> 00:35:01,360
Ever wondered how you drill through steel?

517
00:35:02,800 --> 00:35:05,880
Or cut a railway tunnel through solid rock?

518
00:35:07,280 --> 00:35:11,320
You do it with tools made from tungsten carbide.

519
00:35:13,160 --> 00:35:16,600
The military use loads of tungsten to armour their tanks.

520
00:35:17,920 --> 00:35:20,000
No other material is tough enough.

521
00:35:25,240 --> 00:35:31,120
But over 80% of the world's tungsten is produced by just one nation,

522
00:35:31,120 --> 00:35:32,320
China.

523
00:35:34,160 --> 00:35:36,400
They've been selling it for decades.

524
00:35:37,800 --> 00:35:42,560
Then in 2010, they restricted supply,

525
00:35:42,560 --> 00:35:45,720
sending shock waves around the world.

526
00:35:45,720 --> 00:35:50,080
But a solution has been found in a field in Devon.

527
00:35:53,640 --> 00:35:54,680
ELECTRO MUSIC PLAYS

528
00:36:02,640 --> 00:36:04,280
In 2015,

529
00:36:04,280 --> 00:36:09,720
the diggers moved into the first metal mine to open in the UK for 40 years.

530
00:36:13,760 --> 00:36:15,280
They're digging for tungsten.

531
00:36:25,440 --> 00:36:28,800
Cornwall and this part of Devon are very rich in metals.

532
00:36:28,800 --> 00:36:32,200
Cornwall in particular is known for its tin and copper production historically.

533
00:36:32,200 --> 00:36:36,320
The thing that's unique about tungsten compared to other metals is that

534
00:36:36,320 --> 00:36:39,280
there's not a lot of mines producing it, especially in the western world.

535
00:36:39,280 --> 00:36:40,960
That's incredibly impressive.

536
00:36:40,960 --> 00:36:44,280
What strikes you is how big the operation is.

537
00:36:44,280 --> 00:36:47,800
So, where is the tungsten ore here, then?

538
00:36:49,080 --> 00:36:52,200
So, the tungsten ore is contained within a granite ore body,

539
00:36:52,200 --> 00:36:55,400
which is the white material you can see here in front of you.

540
00:36:55,400 --> 00:36:56,920
And within the granite, you've got

541
00:36:56,920 --> 00:36:58,920
hundreds of thousands of these quartz veins.

542
00:36:58,920 --> 00:37:01,720
So this is a lump of quartz from one of those veins?

543
00:37:01,720 --> 00:37:05,400
Correct. Every grey stripe in the rock is a vein,

544
00:37:05,400 --> 00:37:08,600
and within those veins you've got quartz matrix,

545
00:37:08,600 --> 00:37:10,440
and then within it is your wolframite

546
00:37:10,440 --> 00:37:11,960
and that's your tungsten ore.

547
00:37:11,960 --> 00:37:13,280
Wow, so there it is.

548
00:37:13,280 --> 00:37:14,680
- That's the magic stuff.
- Correct.

549
00:37:16,080 --> 00:37:19,400
How rare is it to find quartz in

550
00:37:19,400 --> 00:37:23,000
this vein-like structure with wolframite in it, in the world?

551
00:37:23,000 --> 00:37:24,040
How rare is that?

552
00:37:24,040 --> 00:37:27,160
It's relatively rare to find it in this kind of quantity.

553
00:37:27,160 --> 00:37:30,160
This is a pretty big mine by world standards,

554
00:37:30,160 --> 00:37:32,600
certainly one of the biggest deposits in the world.

555
00:37:32,600 --> 00:37:36,000
This is by far the largest concentration of it in the British Isles.

556
00:37:37,880 --> 00:37:42,320
These huge diggers shift over 10,000 tonnes of ore a day.

557
00:37:45,040 --> 00:37:49,320
There's enough tungsten here to secure supply for at least a decade.

558
00:37:53,720 --> 00:37:57,280
This is a 125 tonne excavator,

559
00:37:57,280 --> 00:38:01,360
loading a 100 tonne dump truck with category one ore.

560
00:38:01,360 --> 00:38:02,920
So, this is the best quality ore.

561
00:38:02,920 --> 00:38:07,040
And you have enough dump trucks so that when one is full and off,

562
00:38:07,040 --> 00:38:10,000
there's another dump truck to take its place.

563
00:38:10,000 --> 00:38:14,280
How long does it take from digging it out here to refining it and then

564
00:38:14,280 --> 00:38:15,760
coming out as a product?

565
00:38:15,760 --> 00:38:17,720
If we took that straight into the crusher

566
00:38:17,720 --> 00:38:19,320
and it was immediately crushed,

567
00:38:19,320 --> 00:38:22,480
I think, to get through the whole of the processing plant

568
00:38:22,480 --> 00:38:24,040
is about 50 minutes.

569
00:38:24,040 --> 00:38:26,280
- 50 minutes? Wow, that's efficient. 
- Yeah.

570
00:38:28,240 --> 00:38:32,000
The ore is crushed and then fed into the processing plant.

571
00:38:33,040 --> 00:38:36,200
No chemicals are used to extract the tungsten.

572
00:38:36,200 --> 00:38:39,720
It's so heavy that they can separate it using gravity.

573
00:38:39,720 --> 00:38:41,880
The crushed ore is washed,

574
00:38:41,880 --> 00:38:46,480
filtered and shaken until the dark, finished product separates out.

575
00:38:52,640 --> 00:38:55,560
- There you go. If you want to get your hands in.
- Wow, this is it.

576
00:38:57,520 --> 00:39:00,720
So, this will be about 55-60% tungsten.

577
00:39:00,720 --> 00:39:02,760
Wow, it's really heavy.

578
00:39:02,760 --> 00:39:05,000
- Yeah, very heavy.
- Incredible.

579
00:39:08,440 --> 00:39:14,280
Each of these one-tonne sacks is worth £16,000.

580
00:39:17,400 --> 00:39:21,920
Tungsten is a superelement because it can withstand virtually anything.

581
00:39:22,960 --> 00:39:25,400
There's nothing else quite like this stuff.

582
00:39:28,120 --> 00:39:29,840
And now for the ultimate test.

583
00:39:29,840 --> 00:39:33,080
Let's find out how strong this ball really is.

584
00:39:33,080 --> 00:39:37,120
Could it withstand this industrial roller, or this industrial roller,

585
00:39:37,120 --> 00:39:40,000
or this industrial roller, or...

586
00:39:40,000 --> 00:39:44,320
this 20 tonne industrial roller?

587
00:39:44,320 --> 00:39:45,360
Let's see, shall we?

588
00:39:46,840 --> 00:39:50,360
Just to show how effective this roller is, first,

589
00:39:50,360 --> 00:39:51,680
let's try a cricket ball.

590
00:39:53,280 --> 00:39:54,600
SUSPENSEFUL MUSIC PLAYS

591
00:40:02,080 --> 00:40:03,640
Oh, yeah.

592
00:40:03,640 --> 00:40:05,520
No longer a ball, more a puck now.

593
00:40:08,040 --> 00:40:10,120
Now the tungsten carbide ball.

594
00:40:36,680 --> 00:40:37,720
The wood's destroyed.

595
00:40:38,680 --> 00:40:39,720
The ball...

596
00:40:39,720 --> 00:40:41,360
totally unscathed.

597
00:40:41,360 --> 00:40:44,840
It's amazing! Absolutely unscathed.

598
00:40:44,840 --> 00:40:46,280
Wait, wait, OK.

599
00:40:46,280 --> 00:40:50,160
Look, that's what's happened. It's made a massive hole in the concrete.

600
00:40:51,120 --> 00:40:53,360
It's not got a scratch on it.

601
00:40:53,360 --> 00:40:56,360
It's absolutely, completely pristine.

602
00:40:59,480 --> 00:41:02,720
We have a stable supply of tungsten for the time being,

603
00:41:02,720 --> 00:41:04,160
but demand is rising...

604
00:41:05,440 --> 00:41:07,800
..as it is for all our superelements,

605
00:41:07,800 --> 00:41:09,880
for one simple reason.

606
00:41:12,480 --> 00:41:16,600
When I was born, there were 3.5 billion people on the planet.

607
00:41:16,600 --> 00:41:18,800
Now, there are 7 billion.

608
00:41:18,800 --> 00:41:22,160
The human population has doubled in my lifetime,

609
00:41:22,160 --> 00:41:27,200
and all those people are buying and using ever more complex stuff,

610
00:41:27,200 --> 00:41:32,040
and that is requiring us to dig up more and more minerals to keep up with demand.

611
00:41:38,360 --> 00:41:41,200
All our superelements come out of the Earth.

612
00:41:41,200 --> 00:41:43,440
We're really good at finding them.

613
00:41:43,440 --> 00:41:46,200
So far, we haven't run out of anything.

614
00:41:46,200 --> 00:41:50,040
But there's only one Earth and sooner or later,

615
00:41:50,040 --> 00:41:53,080
we're going to reach the limits of what it can provide.

616
00:41:54,040 --> 00:41:55,800
It's the ultimate bottleneck.

617
00:41:57,120 --> 00:42:02,080
If that happens, we can kiss goodbye to our hi-tech world.

618
00:42:02,080 --> 00:42:04,760
So what can we do to fix the future?

619
00:42:09,520 --> 00:42:12,240
We could start by learning some lessons from nature.

620
00:42:13,440 --> 00:42:18,760
There's one superelement that nature needs in abundance, and in nature,

621
00:42:18,760 --> 00:42:20,120
it never seems to run out.

622
00:42:22,200 --> 00:42:24,200
It's called phosphorus.

623
00:42:27,480 --> 00:42:30,320
So they just look like bits of wax...

624
00:42:30,320 --> 00:42:34,800
I'm back with my audience in Bristol to demonstrate a stunning property

625
00:42:34,800 --> 00:42:39,720
of phosphorus that explains why it's so important for living things.

626
00:42:39,720 --> 00:42:42,360
OK, I'm going to go for it now. Are you all ready for this?

627
00:42:42,360 --> 00:42:47,480
'Watch what happens when I burn a tiny bit in a big jar of oxygen.'

628
00:42:49,480 --> 00:42:51,240
ORCHESTRAL MUSIC PLAYS

629
00:43:10,520 --> 00:43:13,120
I give you phosphorus, everybody!

630
00:43:13,120 --> 00:43:14,280
AUDIENCE APPLAUDS

631
00:43:18,760 --> 00:43:22,600
The phosphorus glows because it is highly reactive with oxygen.

632
00:43:26,480 --> 00:43:30,160
The reaction creates molecules of phosphorus bound to oxygen,

633
00:43:30,160 --> 00:43:32,960
and these molecules are the building blocks of life.

634
00:43:35,200 --> 00:43:41,080
They form the backbone of our DNA and the DNA of all living things.

635
00:43:44,680 --> 00:43:47,960
Phosphorus is one of nature's superelements.

636
00:43:52,440 --> 00:43:54,040
Plants get it from the soil...

637
00:43:55,360 --> 00:43:57,640
..and return it to the soil when they die.

638
00:44:00,240 --> 00:44:02,720
But when farmers harvest crops,

639
00:44:02,720 --> 00:44:06,800
they often have to replenish the phosphorus artificially with fertiliser.

640
00:44:08,080 --> 00:44:11,920
The fertiliser is made from phosphorus rich with rocks.

641
00:44:13,120 --> 00:44:16,920
But there aren't many of them, and we've dug most of them up already.

642
00:44:18,080 --> 00:44:22,400
75% of the rock that is left is in just one country,

643
00:44:22,400 --> 00:44:23,640
Morocco.

644
00:44:27,640 --> 00:44:31,040
There's a real risk that our ability to feed the world

645
00:44:31,040 --> 00:44:34,080
will depend on just one country.

646
00:44:34,080 --> 00:44:36,560
So we need a better solution,

647
00:44:36,560 --> 00:44:40,720
and nature has taught us that there is one obvious place to look.

648
00:44:42,840 --> 00:44:47,480
You might not like to think about it, but poo makes excellent fertiliser.

649
00:44:48,520 --> 00:44:50,880
When we eat plants and animals,

650
00:44:50,880 --> 00:44:53,560
we eat the phosphate they contain and by and large,

651
00:44:53,560 --> 00:44:55,000
that passes straight through us.

652
00:44:57,160 --> 00:45:02,000
So that means that sewage is chock-full of phosphate fertiliser,

653
00:45:02,000 --> 00:45:07,320
and the poo from the people of Nottingham is as good as any other in the world.

654
00:45:07,320 --> 00:45:10,880
At this sewage treatment plant in Stoke Bardolph,

655
00:45:10,880 --> 00:45:15,000
human waste is something to be prized and revered.

656
00:45:15,000 --> 00:45:16,400
Hi, it's the BBC here.

657
00:45:16,400 --> 00:45:18,360
We'd like to talk about your poo.

658
00:45:18,360 --> 00:45:19,600
'OK, come through.'

659
00:45:31,720 --> 00:45:37,840
Although full of phosphorus, you can't just spread human poo on fields.

660
00:45:37,840 --> 00:45:43,120
It smells pretty bad, and it's full of deadly pathogens.

661
00:45:43,120 --> 00:45:44,840
Like all sewage treatment works,

662
00:45:44,840 --> 00:45:48,960
the main job of this plant is to turn the bad stuff into something a

663
00:45:48,960 --> 00:45:52,880
bit more pleasant. But here, they take it one step further.

664
00:45:57,840 --> 00:46:01,160
The first stage of the treatment process is to remove

665
00:46:01,160 --> 00:46:04,720
the big bits, the rag, and also the grit.

666
00:46:04,720 --> 00:46:06,920
- Loo paper, do you mean that?
- So...

667
00:46:06,920 --> 00:46:09,520
- I'm just getting a bit ahead of you. OK.
- No, no, it's OK.

668
00:46:09,520 --> 00:46:13,720
Yeah, loo paper will be trapped on the screen, and

669
00:46:13,720 --> 00:46:17,360
all the stuff that people throw down the toilet that they probably shouldn't.

670
00:46:17,360 --> 00:46:21,200
- Wipes.
- Wipes, baby wipes.. yeah, exactly.

671
00:46:21,200 --> 00:46:23,320
It flows into a big tank, the solid matter,

672
00:46:23,320 --> 00:46:26,400
the faecal matter settles to the bottom of the tank.

673
00:46:26,400 --> 00:46:27,600
Does it always settle?

674
00:46:27,600 --> 00:46:31,520
Because there are, I don't know how to put this, but there are floaters,

675
00:46:31,520 --> 00:46:34,600
aren't there, and there are sinkers?

676
00:46:34,600 --> 00:46:36,840
- Yeah.
- By the time they get here, are they all sinkers?

677
00:46:36,840 --> 00:46:39,400
They're pretty much all sinkers.

678
00:46:39,400 --> 00:46:44,760
It's rare to see the faecal matter float, but you will get a film of fat.

679
00:46:46,280 --> 00:46:49,240
We call it scum. Not really a nice term, but...

680
00:46:49,240 --> 00:46:51,720
I'm getting the whiff now, I'm getting the whiff.

681
00:46:53,760 --> 00:46:57,400
It may be smelly, but this is not waste.

682
00:46:57,400 --> 00:47:01,720
It's a treasure trove of magic ingredients.

683
00:47:01,720 --> 00:47:06,720
At this site, they turn sewage into concentrated phosphorus fertiliser.

684
00:47:08,000 --> 00:47:10,200
And no chemicals are involved.

685
00:47:10,200 --> 00:47:12,200
It's all done by bacteria.

686
00:47:13,800 --> 00:47:19,720
As the sewage flows through, it's becoming progressively more treated.

687
00:47:19,720 --> 00:47:21,800
So, by the end here as it flows over this weir,

688
00:47:21,800 --> 00:47:25,680
it is by then a mixt of treated sewage,

689
00:47:25,680 --> 00:47:27,120
but with the bacteria still in it.

690
00:47:27,120 --> 00:47:31,960
There are bacteria called phosphate accumulating organisms that will take

691
00:47:31,960 --> 00:47:36,520
up phosphorus beyond their normal metabolic requirement as an energy store.

692
00:47:36,520 --> 00:47:39,400
- So they store it inside their cellular body...
- Yep.

693
00:47:39,400 --> 00:47:42,800
..and then they're going that way, heading off somewhere? Is that right?

694
00:47:42,800 --> 00:47:46,040
That's right. Then they go into the settlement tanks.

695
00:47:46,040 --> 00:47:48,280
The bacteria settle to the bottom,

696
00:47:48,280 --> 00:47:54,200
we pump away a portion of that sludge to those big concrete tanks you see over there.

697
00:47:55,160 --> 00:48:00,120
The phosphorus-rich bacterial sludge is spun in these centrifuges to

698
00:48:00,120 --> 00:48:01,160
remove the liquid.

699
00:48:02,280 --> 00:48:06,440
Leaving behind what I'm told is called sludge cake.

700
00:48:09,960 --> 00:48:13,760
So this is basically human manure, right?

701
00:48:13,760 --> 00:48:15,160
Yeah.

702
00:48:15,160 --> 00:48:21,040
This rich compost is perfectly safe to be spread directly onto agricultural land.

703
00:48:22,040 --> 00:48:25,520
But it's bulky and heavy, so it's expensive to transport.

704
00:48:26,720 --> 00:48:31,040
The real magic comes from the liquid that was spun off in the centrifuge.

705
00:48:32,640 --> 00:48:36,200
It's distilled into a powder called struvite,

706
00:48:36,200 --> 00:48:41,520
a concentrated source of phosphorus, easy to bag up and transport,

707
00:48:41,520 --> 00:48:42,960
the perfect fertiliser.

708
00:48:44,360 --> 00:48:45,720
This is it?

709
00:48:45,720 --> 00:48:48,920
This is it. So, this is struvite, or magnesium ammonium phosphate,

710
00:48:48,920 --> 00:48:50,960
mineral phosphate fertiliser.

711
00:48:52,400 --> 00:48:54,040
It's ingenious, isn't it?

712
00:48:54,040 --> 00:48:56,680
People flush their loo, they think that's just waste,

713
00:48:56,680 --> 00:48:59,440
and you've recovered very valuable stuff.

714
00:49:01,080 --> 00:49:03,560
It's great, isn't it? Where there's muck, there's brass.

715
00:49:06,800 --> 00:49:09,160
Instead of digging phosphorus out of the ground,

716
00:49:09,160 --> 00:49:14,200
we can recycle it the way nature does, and that way, we'll never run out.

717
00:49:15,200 --> 00:49:18,600
So could recycling save all our superelements?

718
00:49:21,080 --> 00:49:22,800
If only it were that simple.

719
00:49:27,120 --> 00:49:29,240
Which brings me back to smartphones.

720
00:49:33,600 --> 00:49:35,480
The problem with recycling

721
00:49:35,480 --> 00:49:39,640
comes from their incredibly sophisticated design.

722
00:49:39,640 --> 00:49:43,560
Some of you are probably watching this programme on a phone.

723
00:49:43,560 --> 00:49:45,160
We filmed it on a phone.

724
00:49:46,280 --> 00:49:51,080
Even the seemingly simple things that your phone does are really amazing.

725
00:49:51,080 --> 00:49:54,600
For instance, your phone knows which way up it is, doesn't it?

726
00:49:54,600 --> 00:49:56,800
That seems really simple, but actually,

727
00:49:56,800 --> 00:50:00,240
there's a tiny machine inside the phone working that out.

728
00:50:00,240 --> 00:50:01,720
It's called an accelerometer,

729
00:50:01,720 --> 00:50:05,080
and it's got moving parts that are smaller than the hair of a flea.

730
00:50:06,080 --> 00:50:07,800
And it detects the force of gravity.

731
00:50:07,800 --> 00:50:09,560
That's just incredible, isn't it?

732
00:50:10,680 --> 00:50:15,960
Our phones are so smart, but their lives are short.

733
00:50:15,960 --> 00:50:20,080
The average lifespan of a phone is just two years.

734
00:50:21,440 --> 00:50:25,040
Has anyone here ever wondered exactly what happens to your phones if you

735
00:50:25,040 --> 00:50:26,400
send them off for recycling?

736
00:50:27,400 --> 00:50:31,000
Well, they get reconditioned if they're in good nick and resold,

737
00:50:31,000 --> 00:50:32,880
but if not...

738
00:50:32,880 --> 00:50:34,960
They share the same grisly fate.

739
00:50:39,320 --> 00:50:40,960
I'm going to wear ear defenders.

740
00:51:02,080 --> 00:51:07,640
Old phones are shredded in industrial machines far bigger than this blender.

741
00:51:07,640 --> 00:51:10,840
Every day, thousands of phones in the UK alone

742
00:51:10,840 --> 00:51:13,320
end their lives in this way.

743
00:51:13,320 --> 00:51:19,800
And so almost all the precious indium used to make touchscreens ends up in landfill.

744
00:51:23,400 --> 00:51:25,680
That's pretty impressive.

745
00:51:25,680 --> 00:51:29,280
In the end, I'm afraid to say, it ends up as dust.

746
00:51:31,160 --> 00:51:32,520
A sad end, don't you think?

747
00:51:36,720 --> 00:51:39,960
And it's the same story for most superelements.

748
00:51:42,000 --> 00:51:44,640
Helium is so light, it evades capture.

749
00:51:47,800 --> 00:51:52,360
The rhenium in jet engines is baked into an alloy with other metals that

750
00:51:52,360 --> 00:51:53,800
are hard to separate out.

751
00:51:56,560 --> 00:52:01,720
So yes, we need to get much, much better at recycling.

752
00:52:01,720 --> 00:52:05,320
But it's never going to be a perfect solution.

753
00:52:05,320 --> 00:52:09,800
Ultimately, we're going to need new sources of supply,

754
00:52:09,800 --> 00:52:13,680
and there's one option that could solve all our problems...

755
00:52:13,680 --> 00:52:16,520
I'm going to let you guys have a look at these.

756
00:52:16,520 --> 00:52:17,800
'..find some new rocks.'

757
00:52:19,200 --> 00:52:21,720
All superelements come from rocks,

758
00:52:21,720 --> 00:52:24,120
but these ones are particularly special.

759
00:52:25,160 --> 00:52:27,120
They're packed full of them.

760
00:52:27,120 --> 00:52:28,960
Hold the Star Trekian...

761
00:52:30,280 --> 00:52:35,280
Using a sci-fi looking X-ray gun, we can find out exactly what's in them.

762
00:52:36,960 --> 00:52:40,840
So what we're getting here is iron coming out, cobalt, nickel,

763
00:52:40,840 --> 00:52:45,520
we mentioned that, and uranium, both used in radioactive reactors.

764
00:52:45,520 --> 00:52:49,280
We've counted six different elements, and the list is still rising.

765
00:52:50,640 --> 00:52:55,880
Calcium, titanium, arsenic, yttrium.

766
00:52:55,880 --> 00:52:57,800
'But there's a catch.

767
00:52:57,800 --> 00:53:00,600
'They come from outer space.

768
00:53:00,600 --> 00:53:02,600
'These rocks are meteorites.'

769
00:53:03,960 --> 00:53:06,040
T minus one minute and counting.

770
00:53:07,760 --> 00:53:09,200
Countdown.

771
00:53:12,240 --> 00:53:15,600
Most of the elements on our planet originated in space.

772
00:53:16,800 --> 00:53:21,080
They were forged in the Big Bang, or in the hearts of stars.

773
00:53:25,600 --> 00:53:31,600
They became incorporated into our planet as it formed 4.5 billion years ago.

774
00:53:31,600 --> 00:53:35,200
T minus 37 seconds and our count continues to go well...

775
00:53:35,200 --> 00:53:39,880
And they found their way into the other planets and moons of our solar system

776
00:53:39,880 --> 00:53:42,600
as well as countless billions of asteroids.

777
00:53:47,120 --> 00:53:53,120
There's almost an infinite supply of all the elements we could wish for in space.

778
00:53:53,120 --> 00:53:59,280
And the idea of extra-terrestrial mining isn't as crazy as you might think.

779
00:53:59,280 --> 00:54:03,160
- Ten, nine, eight... 
- Ignition sequence start.

780
00:54:03,160 --> 00:54:05,600
This is the surface of Mars.

781
00:54:11,120 --> 00:54:14,160
Actually, it's a warehouse in Stevenage.

782
00:54:14,160 --> 00:54:18,400
This accurate replica of the Martian surface is where space hardware

783
00:54:18,400 --> 00:54:21,440
destined for the red planet is put through its paces.

784
00:54:23,960 --> 00:54:25,280
Welcome to our Mars yard.

785
00:54:25,280 --> 00:54:29,000
This is where we test all of our rovers

786
00:54:29,000 --> 00:54:32,280
that we're developing to go to the surface of Mars.

787
00:54:32,280 --> 00:54:35,000
They're going to launch in 2020,

788
00:54:35,000 --> 00:54:40,000
land in early 2021 and then drive around on the surface and take samples

789
00:54:40,000 --> 00:54:42,280
from a variety of different locations.

790
00:54:42,280 --> 00:54:44,280
So you're going to pick up rocks on Mars?

791
00:54:44,280 --> 00:54:48,240
The ultimate plan for this is to drill underneath the surface,

792
00:54:48,240 --> 00:54:51,640
collect a sample, see what elements are there, what minerals.

793
00:54:51,640 --> 00:54:54,840
Could it potentially have supported life is one of the big questions?

794
00:54:54,840 --> 00:55:00,160
How feasible is it to go to another planet or to an asteroid and mine it?

795
00:55:00,160 --> 00:55:04,600
There's lots of things that need to be developed to get us to that point.

796
00:55:04,600 --> 00:55:06,240
But this is one of those things.

797
00:55:06,240 --> 00:55:07,960
We're starting along that road now.

798
00:55:13,320 --> 00:55:15,480
From this Stevenage warehouse,

799
00:55:15,480 --> 00:55:19,040
Airbus designed and built the Rosetta spacecraft

800
00:55:19,040 --> 00:55:22,640
that landed a probe on a comet in 2014.

801
00:55:25,240 --> 00:55:26,440
And in the workshop,

802
00:55:26,440 --> 00:55:30,120
they're developing the next generation of extra-terrestrial robots.

803
00:55:31,480 --> 00:55:36,240
This space vacuum cleaner can sample alien soil.

804
00:55:36,240 --> 00:55:39,680
We can start the brushes and you can see them rotating opposite to each other.

805
00:55:39,680 --> 00:55:43,640
And then it would go down into the surface like that,

806
00:55:43,640 --> 00:55:48,080
and you can see all the sample being flipped up into the inside of here.

807
00:55:48,080 --> 00:55:50,000
This is a prospecting device.

808
00:55:50,000 --> 00:55:51,560
You set it down onto an asteroid,

809
00:55:51,560 --> 00:55:55,680
gather some up and bring it back to Earth and see if it's valuable.

810
00:55:55,680 --> 00:55:58,400
Yeah, pretty much. This is what will allow us to work out...

811
00:55:58,400 --> 00:56:00,760
what's on there and if it's of any interest.

812
00:56:04,520 --> 00:56:08,240
This technology is being developed for scientific missions,

813
00:56:08,240 --> 00:56:11,360
but it could one day be used for commercial ventures.

814
00:56:13,200 --> 00:56:16,800
So are there companies seriously interested in mining in space?

815
00:56:16,800 --> 00:56:21,520
Yeah, definitely. There's companies being set up...that have already been set up today,

816
00:56:21,520 --> 00:56:24,720
focused specifically on mining in space.

817
00:56:24,720 --> 00:56:29,200
You've also got governments around the world that are setting up the

818
00:56:29,200 --> 00:56:31,560
regulations that will be required to do this,

819
00:56:31,560 --> 00:56:36,240
allowing companies to go and mine on the moon or mine on an asteroid.

820
00:56:36,240 --> 00:56:38,520
This all sounds so incredible.

821
00:56:38,520 --> 00:56:42,280
How far off are we realistically from mining in space?

822
00:56:42,280 --> 00:56:44,920
We'll be able to do it in the next 10 or 20 years or so.

823
00:56:45,960 --> 00:56:48,760
So in my lifetime, we could be mining space?

824
00:56:48,760 --> 00:56:49,800
Yep, certainly.

825
00:56:59,280 --> 00:57:04,240
NASA is planning a mission to a metal-rich asteroid in 2023.

826
00:57:06,200 --> 00:57:09,800
They have no intention of mining it, but if they did,

827
00:57:09,800 --> 00:57:14,240
the iron alone is estimated to be worth quadrillions of dollars.

828
00:57:15,800 --> 00:57:19,840
The trouble is, we don't have the technology to bring it back to Earth and,

829
00:57:19,840 --> 00:57:23,040
even if we did, it would probably cost more than the metal is worth.

830
00:57:24,880 --> 00:57:27,680
But if there's one thing history teaches us,

831
00:57:27,680 --> 00:57:29,080
when the demand is big enough...

832
00:57:30,040 --> 00:57:31,640
..we tend to find a solution.

833
00:57:35,280 --> 00:57:36,320
JAUNTY MUSIC PLAYS

834
00:57:41,000 --> 00:57:45,720
Harnessing the astonishing powers of materials has built our modern world.

835
00:57:48,240 --> 00:57:51,000
With superelements at our fingertips...

836
00:57:52,600 --> 00:57:55,640
..our creativity knows no bounds.

837
00:57:57,760 --> 00:58:00,160
We've made the world more advanced,

838
00:58:00,160 --> 00:58:04,920
more connected and more exciting than ever before.

839
00:58:04,920 --> 00:58:08,880
But in doing so, we've also made ourselves vulnerable.

840
00:58:14,560 --> 00:58:19,280
By exploiting the amazing properties of elements that are becoming scarce,

841
00:58:19,280 --> 00:58:23,000
there is a danger that the technologies we take for granted

842
00:58:23,000 --> 00:58:24,920
will no longer be available.

843
00:58:26,120 --> 00:58:30,200
Ultimately, though, I place my faith in human ingenuity.

844
00:58:32,360 --> 00:58:38,600
I'm optimistic that we can avoid running out of the very stuff on which we rely.

845
00:58:38,600 --> 00:58:40,680
Using better design,

846
00:58:40,680 --> 00:58:45,280
much more efficient recycling and maybe even space mining,

847
00:58:45,280 --> 00:58:50,440
we can keep our material culture healthy without exhausting what the

848
00:58:50,440 --> 00:58:51,640
planet can provide.

