It's a dirty world out there, and today
on DFTV, we're digging up the dirt on
pollution, finding silver linings in
socks and growing skateboards.
Major funding for Dragonfly TV is
provided by
the National Science Foundation,
supporting education and research across
all fields of science and engineering.
The National Science Foundation, where
discoveries begin.
I'm Eric, and today's show is brought to
you by All Things Nano.
You can't see nanoparticles, and even
though they're super small, just one
billionth of a meter, they have started
a revolution. A
couple 100 years ago, big machines
started a different revolution called the
Industrial Revolution before that. People
made things with their hands, but then
factories came along
and the assembly line totally changed the
way things got made. Now
nanotechnology is using tiny particles to
make cool things that can change the way
we live. So that is a revolution too.
And some of these nano inventions may
actually help the planet stay healthy.
Think about all the trash that piles up.
Plastic that never breaks down is a big
problem. And
scientists are using nanotechnology to
create a new kind of plastic that
decomposes in just a few weeks instead
of 1000 years.
And that might save us from this. And
you know what?The nano revolution
may be happening in your own backyard.
Check this out. Gabe and Taylor are
investigating how nanoparticles can clean
up a giant mess.
I'm Taylor. And I'm Gabe. And this winter
used to be very, very polluted. But now
it's pretty clean.
We love the water. We know that
keeping it clean is not always easy.
Just upriver, there's an old zinc
smelting plant that was one of the
factories polluting the water, and even
though it shut down, the land there is
still full of toxic stuff. So we've been
wondering, can pollution from places like
that be stopped from running into rivers
and streams?We thought we might be
able to learn more about the Palmerton
pollution problem at the Franklin.
That's the Franklin and the Tooten
Philadelphia. They have tons of really
cool exhibits.
Hi, guys. I'm Jay Autry. One of the
museum educators told us how they are
cleaning up pollution using a special
kind of iron, nano-iron. If you look
closely, you can see that we've got sand
packed in the middle here. And I put in
some iron flakes into the top.
Can you see if the iron flakes are making
it through the sand?The big iron doesn't
go all the way through?No. So nano iron
is special because it's a lot smaller
than those iron flakes. Gabe, I want you
to pour that nano iron into the tube
here. So as we watch, you can see that
the nano-iron is filtering through and
coming through the bottom. A model of the
soil shows what a difference the size in
particles makes. So I get it, the big
iron doesn't fit through the ground. But
the nano-iron can go all the way through
and attach it to the pollutants. Do you
think you might be able to take some of
that nano-iron to do some tests up at
Palmerton?Ah, so you've heard about the
pollution up at Palmerton. Well, I think
I've got some friends at Penn State who
might be able to help you out.
On our way to the Palmerton Zinc plant,
we passed rivers and creeks that used to
be really dirty from the steel mills and
other pollution.
The old Palmerton Zinc plant is a sad
waste of a place where you don't want to
hang out for long. The pollution from the
site k*lled plants and animals in the
area and is still sitting in the soil.
We looked around and met up with Joanna,
a scientist from Penn State. Hey, hi
guys. I'm Joanna. Joanna's on the team
that's working to clean up the Palmerton
site. About 10 years ago, this
landscape was all barren because of the
zinc smelting that went on here, but the
vegetation is coming back slowly, as you
can see. So with all this pollution in
the ground, does it get to the
groundwater?Yeah, it does. And that's a
big problem because once it gets into the
groundwater, it can get into wells and
other sorts of drinking water. Would
nanoiron work here to clean it up?
Absolutely. Joanna told us that when you
inject nanoiron into the soil, it
attaches to pollutants and heavy metals
in the soil and groundwater, just like we
saw at the museum. We got out our shovels
and took a soil sample. Is zinc the only
pollutant in this ground?Well, there
definitely is a lot of zinc from the
zinc. melting. But other metals, like
lead, nickel, and copper, are really
more dangerous to us. Are you guys ready
to take this to the lab?Yeah.
What I like about working with Gabe is
that he's Gabe, and he was Gabe.
I see the resemblance. Let's make jokes.
Splish, splash, splash, now I'm taking a
bath Makes it more, uh, that atmosphere a
lot lighter. What will a nano-iron do to
the Palmerton dirt?Stay tuned for the
magic of chemistry.
It's hard to imagine hundreds of acres
being cleaned up by tiny nanoparticles.
But that's part of the nanotechnology
deal. Super small can be super powerful.
In today's challenge, we meet another
common metal. When you make
nano-sized particles from this metal,It
can be used to help fight disease. The
question is, what is
cancer's new nano enemy?
Is it a gold,
B tin, C
mercury or D aluminum?
Try to figure it out. I'll be back with a
clue later on and the answer at the end
of the show. Now back to Taylor and Gabe
as they measure the cleaning power of
nano iron.
We met up with Joanna back at the Penn
State campus. She explained to us that we
could run a test on the contaminated soil
samples from the Palmerton site to see if
the nano iron would clean them up.
Joanna let us use her lab at Penn State
to check our samples. We lined up all the
equipment and got to work. First, we mix
our soil samples with some chemicals to
get them ready for testing. We're going
to put our soil on the tumblr to mix
up the solution and the soil. As they
mix, the acetic acid will pull the metals
out of the soil. These soils will be
tumbling for around an hour.
Let's play soccer. You know why I'm
skating with Joanna.
We separated the liquid from our
contaminated soil samples. Any
pollutants that were in the soil would
now be in the liquid. Still rusted from
all the metals inside of the ground. We
finally had the liquid for our nano-iron
test. Next, we added nano-iron to one of
our polluted samples. Good job. All
right, let's go back to the tumblr and
tumble these for an hour. It was time for
the nano-iron to do its thing.
Well, I think science can be funny,
'cause anything can be funny, as long as
you put a little humor into it. No,
scientists cannot be funny.
We went back to the tumblr to check our
samples. Holy mackerel, it's clear. Just
because they're clear doesn't mean the
nano-iron got all the stuff out.
We went to another lab to analyze our
samples. Right here is the atomic
absorption spectrometer. All right. The
spectrometer uses a flame to measure the
amounts of metals in a sample. We
measured the amount of copper, lead, and
nickel in both our treated and untreated
Palmerton samples. It worked, and
Nano iron had removed a large amount of
the copper. It's amazing how the... The
little bit of nano iron really helped
clean the water. Makes such a big
difference. It's a huge jump. When we
were finished, we took our results and
put them on a chart that showed how much
of each metal was in the samples before
and after being treated by nano iron.
The nickel is 1.52. What's after?
Point four. Yummy like a gummy bear. To
help us understand the results in our
chart, Joanna showed us the concentration
of metals that are safe in drinking
water. In the untreated Palmerton sample,
the copper was almost five times higher
than it's safe in drinking water. And the
lead and nickel weren't safe to drink
either. It's kind of scary to think that
that much metal could be in the
groundwater. After the nano iron
treatment, the copper levels in the
Palmerton sample were okay for drinking
water. The blood and neck levels dropped
a lot, but they still weren't quite safe
for the water we drank. Well, from our
findings, it seemed like it only worked
partially. That's really true. You would
probably need to couple nano-iron with
other sorts of clean-up technologies to
make sure our water is safe. I think
we'll have to do a lot of other tests on
a lot of other soils to see if the
nano-iron works. Wow, you guys really
seem like you're into this. Well, it's a
dirty job, ma'am. Someone's got to clean
it up. Thanks, Joanna.
Now that we know pollution can be
invisible, maybe we should test the water
quality here. Well, Joanna said we can go
back any time. Yeah, cool, but
I know a test we can do right now. And
what's that?
What are some other ways that
nanotechnology might help clean up the
planet?Well, some nano-engineers are
working on a special kind of paper towel
to mop up oil spills. This is
how a regular paper towel drinks up
oil and water.
But check this out. A towel with
ultra super special nano fibers
drinks up 20 times its weight in oil
and leaves the water behind. And the best
part is the nano fiber towel can be
reused again and again. Reduce, reuse,
recycle. Nano style.
And next, the ultimate in good green fun.
Anil is developing a skateboard that you
could eat. Well, almost.
Let's go. Well, my name is Anil
Nataralli. I'm a research scientist, and
I helped design this environment-friendly
skateboard.
This is what we use for for making
skateboards. This is a soybean plant and
these are the soybean pods. We extract
the soybeans and we use it to convert
into resin and that acts like a glue.
Soy is our friend.
We have here Senthil, a graduate
student in our lab. After the soybeans
are harvested, the next step is to
extract the protein and use
nanotechnology or nanoparticles. Such
as nanoclay, soy protein,
nanocellulose from wood. And once that is
all added, we have a strong glue that
keeps the skateboard glued together. What
we do is to do the basic research behind
the skateboard. And the skateboard
company, of course, makes all the
skateboards.
Hello, this is Jason. He's the president
of Comet Skateboards, and this is the
place where the skateboards are made.
Yeah, so the focus of what we do at Comet
Skateboards is we take locally grown
hardwoods, locally grown soy, and we
assemble everything here piece by piece.
We take the hardwoods and combine that
with the resin, put that in a press, and
it gets pressed at over 50 tons of
pressure. Flash up Pushing down
on me Until thatResin
and that wood cross-link and bond
together, but they will never split
apart. The soy protein is completely
biodegradable. If you put it in a compost
medium, it is gone to absolutely
pure organic soil in about four months or
so. Skateboarding was new to me. I don't
skateboard, but I try. Look, I'm not a
skateboarder, but I've been playing
badminton for many, many years. Here at
Cornell, we have a lot of young students,
and I can givethem a hard time.
Ohh Let's get ready to rumble!
I think 10 years, 20 years, if we can use
everything sustainable to create a
fully sustainable economy, I would be
very happy.
Anil's skateboards show us that
nanotechnology can be part of keeping our
planet healthy. Other green
nanovations will help make better solar
panels, paints that change colors to
absorb or reflect sunlight, batteries
that make motorcycles like Killacycle
more energy efficient, and the list just
keeps growing. Now
back to a different breakthrough and
today's challenge What is
cancer's new?new nano enemy.
Is it gold, tin,
mercury, or aluminum?
Here's a clue. This metal is
solid at room temperature, it's very
soft, and it can
easily be pounded as thin as this
leaf. Keep on thinking.
Next up, today's Zoom Cab ride is
on a bike.
Oh, no, Zoomer, you're not being replaced
by a bike. We're just zooming into one.
Check this out.
This bike's handlebar support is made of
a lightweight carbon fiber. Let's zoom in
for a closer look, shall we?
It's criss-crossing fibers make it strong
and flexible. In each strand, there
are thousands of separate
carbon fibers. Looks kind of like a
giant fistful of uncooked spaghetti,
doesn't it?I know, Zoomer. Makes me
hungry too. Where each spaghetti-like
strand is snapped, you can see the fiber
ends and those glues along the side of
the strands. Those help the fibers stick
together with a special kind of glue.
Let's zoom in for a closer look. You
see that stripe that looks kind of like a
river?That stripe is made-up of
layers of carbon atoms.
And these dots over here, those are the
same layers just seen from above. Looks
like we're heading into a carbon beehive.
And those fuzzy dots right there, those
are individual carbon atoms.
I know, Zoomer. Let's put it in reverse.
So next time you see a cyclist flying by.
They may be riding carbon spaghetti.
Yep, the nanoworld is full of surprises.
Next up, Sarah and Monde find out that
when it comes to socks, all that glitters
is not gold.
Hey, I'm Sarah. And I'm Monde. And this
is our story.
Once upon a time, there was a metal
called zoa. It was discovered that
silver could k*ll bacteria on food and in
drinks. No one understood how it worked.
It just did. Long ago, ancient
Egyptians put their food inside silver
containers to keep them from spoiling.
Ancient Greeks and Romans kept their
water in silver goblets to keep it fresh
and clean.
Chinese emperors, it was silver
chopsticks. Americans used to put silver
dollars in mouths.
During World w*r One, silver leaf was
even used to help fight infections and
heal wounds.
The next stop in our silver story was the
Science Center in Ithaca, NY.
It's a great museum, and they have all
kinds of fun exhibits.
Look, nanotechnology. We checked out a
couple of exhibits all about nano.
Dr. Monday. Then we got to the
nano-silver display and learned that
scientists are using nano-silver in
bandages to help cuts heal faster. What?
Nano-silver?We wanted to learn more,
so we met up with BJ. He's a museum
services coordinator at the Science
Center. Silver that scientists used to
use, you know, was verybig. It's called
macrosilver, and it's something you could
see with your own eyes. But scientists
say you're using a different kind of
silver. It's called nanosilver, and it's
stuff that's so tiny you have to use
really, really powerful microscopes to
look at it. So what's with this green guy?
Well, this green guy here is our model of
Bob the bacteria cell. We
compared how many pieces of silver we
could put on Bob the bacteria cell with
big beach ba*ls to represent regular
silver and little wiffle ba*ls to
represent nanosilver. I can't even
see bacteria with my eyes, and
nano-silver is smaller than that.
We could only fit three regular-sized
silver pieces on the bob, but tons of
nano-silver stuff. Get the idea?The same
amount of silver can actually k*ll more
bacteria because of how small the size
is. So that's why nano-silver kills even
more bacteria than regular silver. That's
correct.
DJ told us that nano-silver is being used
in different kinds of products to k*ll
bacteria. Those bacteria let off some
funky odors. So we put in some
nano-silver particles in the shirt to
help keep those things down. But tell me,
what happens when the nano-silver is
washed down the drain?Well, some people
are worried that nano-silver particles
might end up in the environment and
actually k*ll some good bacteria out in
the wild. Thanks so much. You're welcome.
We decided to visit a lab to test out how
Nano Silver affects the environment. But
first, we had a test of our own to see
how good Nano Silver is at k*lling
bacteria and bad smells. It
was time to put a Nano Silver product to
the test. Nano Socks! We
went to the sporting goods store and
bought one pair of regular socks and
two different brands of Nano Silver
socks. Do they
really smell less than regular socks?I
know how we can find out. How?A smell
test. Okay, so let's put one Nana
Silver sock on one foot and a regular
sock on the other foot. The object is to
get our feet and socks as sweaty as
we possibly can.
How can you go?Get it for me. You getting
tired, Mom?No, are you?We
played for a really long time and got our
socks as sweaty as possible.
It's time for the final moment of truth,
the smell test. I got stanky socks.
Our socks all smelled about the
same, like sweaty socks. Smell
test result inconclusive.
Next up, we wanted to test whether Nano
Silver washes out of the socks when you
put them in the laundry. We remembered
what BJ said. Well, some people are
worried that nano-silver particles might
end up in the environment and actually
k*ll some good bacteria out in the wild.
We washed one of each sock and saved the
dry socks for later. Now let's take the
socks and the water to the lab to see if
any nano-silver has leaked out. We went
to the Department of Microbiology at
Cornell University to meet a student
named Kekia, who tests nano-silver
fabrics. Hekia helped us test our
nano silver, both the silver in the socks
and any silver that might be in the wash
water. First, we did a bacteria test on
our clean, dry socks to see how well the
socks k*lled bacteria. We used a common
type of bacteria called micrococcus.
Micro whata?Micrococcus is
bacteria that's commonly found on your
skin, and it's actually the reason why
your sweat will smell. First, we
cut out samples from our dry, plain
cotton socks and our two pairs of nano
socks. We put the socks on an agar
plate to hold our socks in place. The
agar looks a lot like gelatin, and it had
some bacteria food in it. Then, we
combined the micrococcus bacteria with
liquid agar and poured it in the plate
with our socks. Okay, guys, now we'll
test the wash water. We wanted to know if
the leftover wash water from the socks
could k*ll bacteria, too. We had samples
of wash water from all three of our wash
socks. We took each of our wash
water samples and mixed in bacteria, and
some broth for the bacteria to feed on.
We put all our socks and wash water
samples into the incubator so they could
stay warm and grow overnight.
OK, so here's the regular sock. It's
almost as if there's a sheet of yellow
bacteria over it. The regular sock
didn't k*ll any of these bacteria. Both
of the Nanosilver socks have a ring
around them where no bacteria grew. It's
just like the bacteria is not even
allowed to touch it. They both did their
job and k*lled the bacteria. Then we
checked out our wash water samples. The
water from the regular sock and one of
the Nanosilver socks was full of
bacteria, so it looked cloudy, but the
water from the other Nanosilver sock was
totally clear. Something must have
leaked out of the sock to k*ll the
bacteria. So does that mean that
the socks are leaking nano-silver into
the water?We do know that nano-silver
kills bacteria, so it's possible that's
the case. However, to prove that,
we'd have to run a bunch more tests.
Well, I guess that's an investigation for
another day. We still don't have
all the answers about how silver works,
but now we know that nano-silver has a
lot of cool possibilities if scientists
can figure out the best way to use
nano-silver. And protect the environment
at the same time. It'll be a happyending.
So those two were great nanodetectives. I
guess anyone making new products with
nanoparticles has to do a bunch of tests.
But before Nano Silver came along, we
knew silver had its pluses and minuses.
Like Sarin Mande said, people have been
using silver to help cure infections for
a long time. But too much silver in the
body can cause a skin discoloration
called argyria, which turns the skin
blue-gray permanently.
Silver has a lot of practical uses, too.
It's used in photography. It's good at
conducting electricity. A silver b*llet
can k*ll a werewolf. Its chemical symbol
is AG. Wait a nanosecond!
nanotechnology benefit all people equally?
Let me think about that. Of course not.
Some people might benefit from
nanotechnology and some people might not.
Well, I think that nanotechnology could
never really benefit all people equally
because of the fact that some people
have more money than others. With
nanotechnology engineered products being
more expensive,then people who don't have
quite as much money wouldn't be able to
buy these products. It should be
available to everyone. When everything
starts getting made out of it, it won't
be that expensive. A lot of technology is
that way that it gets cheaper as they
know more about it. Eventually, maybe the
poor people will get it, but it might
take longer. I think there should be laws
that make nanotechnology accessible to
everyone. I think it will definitely
benefit us all in the long run. Cut!
If everyone could access nanotechnology
equally, then it would be fair.
Those kids had some great ideas. Tell us
if you think nanotechnology can help
everyone. Go to our nano message boards
to post your ideas. Here's how.
Click on over to the Dragonfly TV website
at pbskidsgo.org. Stream a cool
DFTV video. Try your hand at the new
Nanobots game, or tell us what you think
about nanotechnology. It's your place to
share your ideas.
Now it's time for the answer to today's
Nano Challenge. What is Cancer's new
enemy?Is it gold,
tin, aluminum, or mercury?
It's gold. Gold has been used in medicine
for a long time, but when it's
nano-sized, gold has all sorts of new
properties, and it's been discovered that
gold can help treat cancer by targeting
only the cancer cells and leaving the
healthy cells untouched. That's much
easier on the patient than what's being
used now. Yep, gold is a
superstar of nanoparticles because it can
be found in everything from.
Medicine to electronics to clothing
to cosmetics. So the nano
revolution lives. Here are some ideas
that may be ready to use soon.
This carbon nanotube helmet is super
strong and light, and it has nano
sensors that give weather reports and
directions. It's 65 degrees. Thanks.
This waterproof jacket changes color and
turns fluorescent at night.
Cool. I
can check text messages on this nano
fiber phone and pop
it onto my wrist. Sweet.
Here is a roll-up TV screen
for watching Dragonfly TV, of course.
And now for the fog-proof
shades. And finally,
my favorite, the
Comet skateboard. for a very
cool and a very green ride. See you
soon for more breakthroughs on Dragonfly
TV.
Body movin' Body movin' He wants the
sound in the town so tunin' Body movin'
Body movin' We be gettin' down and you
know we'll put you doin' Body
movin' Body movin' He wants the sound in
the town so tunin' Body movin' Body
movin' We be gettin' down and you know
we'll put you doin' Body movin' We be
body movin'
Now! Major funding for Dragonfly TV is
provided by...
The National Science Foundation,
supporting education and research across
all fields of science and engineering.
The National Science Foundation, where
discoveries begin
PBS Kids.
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07x06 - Nanotechnology and Society
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Pioneered a "real kids, real science" approach to children's science television and led to the development of the SciGirls television series.
Pioneered a "real kids, real science" approach to children's science television and led to the development of the SciGirls television series.