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Kurzgesagt – In a Nutshell
The Biggest Eruptions That Changed Earth Forever
The Biggest Eruptions That Changed Earth Forever
Kurzgesagt – In a Nutshell
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9:59 · Oct 18, 2022
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The
Earth
is
a
gigantic
ball
of
semi-molten
rock,
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The Earth is a gigantic ball of semi-molten rock,
0:04
with a heart of iron as hot as the surface of the Sun.
0:07
Titanic amounts of heat left over from its birth
0:10
and the radioactive decay of trillions of tons of radioactive elements find no escape
0:14
but up.
0:16
Currents of rock spanning thousands of kilometers carry this energy to the surface.
0:21
Earth’s crust is the only thing in their way.
0:24
It feels solid to us, but it is only a fragile barrier,
0:28
an apple skin around a flaming behemoth.
0:31
True apocalypses can break through
0:33
and unleash eruptions tens of times more powerful than all of our nuclear weapons
0:38
combined,
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subjecting the climate to centuries worth of change in a single year,
0:43
while drowning continents in toxic ash and gases: supervolcanoes.
0:49
How big can they get?
0:50
And will they put an end to humanity?
1:03
Volcanoes There are many types of volcanos, from towering mountains to lava domes,
1:08
but they have two main sources:
1:11
The first is at the boundaries between tectonic plates,
1:14
the pieces of the crust that cover the Earth like a giant jigsaw puzzle.
1:18
There are seven major tectonic plates and dozens of smaller ones,
1:21
drifting against each other at up to 15 cm per year.
1:25
This sounds slow, but on geological timescales it is a titanic struggle over who
1:31
gets to stay on the surface.
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The winning plate crumples into a new mountain range
1:35
while the loser is shoved underneath,
1:37
into an ocean of hot rock at1300°Ct: The asthenosphere.
1:43
The temperature here is enough to melt rock into a liquid,
1:46
but the insane pressures of all that mass keep it a superheated solid.
1:51
Tectonic plates are usually in contact with water for thousands of years
1:55
and absorb some of it.
1:57
When they are submerged into the hot underworld,
1:59
this water triggers chemical transformations that allow tiny portions to melt into magma.
2:05
Liquid magma is less dense than solid rock,
2:07
so it rises to the surface in furious bubbles
2:10
that accumulate in sponge-like reservoirs right under the crust.
2:14
If enough magma accumulates,
2:16
it becomes powerful enough to pierce through the crust – which we experience as volcanoes.
2:22
This happens under the winning plate,
2:24
like a revenge attack by the loser before it is erased forever.
2:28
The second main source of volcanoes are thought to be mantle plumes.
2:32
These are columns of abnormally hot rock
2:35
that rise all the way from the planet’s core-mantle boundary to the surface.
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Much less is known about them,
2:40
but in a way it is
2:41
as if the Earth’s mantle has weather patterns
2:43
and mantle plumes are a little like hot air rising to form storm clouds.
2:48
Storms hundreds of millions of years old,
2:51
made of rock circulating at a rate of a few millimetres per month.
2:55
They don’t care about the motion of tectonic plates,
2:57
so they can break the crust to create volcanoes in the middle of nowhere
3:01
that stubbornly stay active
3:03
as the crust shifts around them.
3:05
The volcanic boom-meter Scientists love to put big booms on a scale
3:10
and came up with a logarithmic scale
3:12
that measures the volume ejected during an eruption:
3:15
The Volcanic Explosivity Index, or VEI.
3:19
Simply put, it starts really small and gets very big very quickly.
3:25
A VEI 2 eruption would fill four hundred full Olympic swimming pools with lava.
3:30
We have around 10 of these per year.
3:33
At VEI 3 we already see devastating effects,
3:36
like the eruption of the Semeru volcano in 2021
3:40
that destroyed thousands of homes in Indonesia.
3:43
At VEI 5, we see catastrophic amounts of materials, cubic kilometers of debris,
3:49
equivalent to an entire lake of molten rock blasted into the air.
3:52
Like the 2022 Hunga Tonga-Hunga Ha’apai eruption
3:56
that sent a shockwave around the globe many times
3:58
and created ocean-wide tsunamis.
4:01
At a VEI of 6, an eruption can change the world.
4:05
In 1883, the Indonesian island volcano Krakatoa erupted nearly continuously over the course of
4:11
5 months.
4:12
One of those eruptions blew it apart, producing the loudest sound recorded in history,
4:17
10 trillion times louder than a rocket taking off,
4:20
heard halfway around the world. 30m high tsunamis swept away nearby populations
4:26
and so much gas
4:28
and ash were released
4:29
that global temperatures cooled by nearly 0.5°C.
4:33
Red dusty sunsets followed for many years.
4:37
At VEI 7, we get Super-Colossal eruptions,
4:41
millennium-defining events that human civilization has only encountered a handful of times.
4:47
Mount Tambora was a 4300m high mountain until it exploded in 1815
4:52
and released 400 times more energy than the Tsar Bomba. 140 billion tons of
4:58
ash and dust were shot halfway to space before smothering the world’s skies,
5:03
turning them a sickly yellow.
5:05
There was no summer the following year,
5:07
crops died and over a hundred thousand people perished.
5:11
This is the dreadful potential of volcanic eruptions,
5:15
with famines across the other side of the world
5:17
and even centuries-long cold periods being attributed to them.
5:21
Ok.
5:22
But what is a supervolcano?
5:24
The term “Super volcano” is a media invention and not a scientific term.
5:30
The main issue with them is
5:31
that not every eruption from a supervolcano is a super eruption.
5:35
What makes super volcanoes special is
5:37
that they have been waiting to erupt for hundreds of thousands of years.
5:41
Pressure builds up in colossal magma reservoirs several kilometers deep,
5:45
until it becomes strong enough to lift the rock above it by several meters.
5:49
Rocks crack under the pressure,
5:51
until they finally give way
5:52
and billions of tons of gas
5:54
and ash blast out at supersonic speed.
5:57
An insane explosion of at least a thousand cubic kilometers
6:00
that impacts every corner of the globe.
6:03
And yet, that is only a small portion of the magma reservoir.
6:07
Super eruptions are like a boiling pot of water popping its lid off
6:11
and spilling a bit off the top.
6:13
Afterwards the ground collapses into the void left behind,
6:16
forming a hole called a caldera.
6:18
Under this caldera, pressure starts building again until the volcano gathers enough energy for
6:23
another supereruption – but this could take hundreds of thousands of years.
6:28
It is estimated that one of the few volcanoes capable of supereruptions on Earth
6:32
could cause a catastrophic eruption every 17,000 years on average.
6:37
That would make them far more frequent than comparable asteroid impacts..
6:40
The most recent super-eruption is the Oruanui eruption 26,500 years ago in New Zealand.
6:48
With the force of dozens of billions of tons of TNT,
6:51
a Mount Everest- sized pile of explosives,
6:54
a huge portion of the landscape was scooped out and thrown into the atmosphere.
6:59
It left behind a caldera spanning 20km
7:02
and it caused the entire Southern Hemisphere to undergo a period of abrupt cooling.
7:07
Though among super-eruptions, it is a mere firework.
7:10
The Lake Toba eruption of 74,000 years ago was a much more significant turning
7:15
point in history.
7:16
It released a gargantuan 5300 cubic kilometers of material,
7:21
enough to blanket parts of South Asia in 15 cm of ash
7:25
and trigger a rapid 4°C drop in global temperatures.
7:29
It’s possible that the volcanic winter lasted ten years,
7:32
followed by worldwide droughts for centuries.
7:35
Earth’s climate might have not recovered for a thousand years.
7:40
The largest volcanic events we know of were not really huge explosions,
7:44
but floods of millions of cubic kilometers of lava.
7:47
The grand finale were the Siberian Traps around 250 million years ago,
7:52
a continuous release of lava for two million years.
7:56
They raised the ocean temperatures to over 40°C,
7:59
which caused the Permian–Triassic extinction, killing over 90% of all species.
8:04
Earth’s surface needed 9 million years to recover.
8:08
These sorts of eruptions don’t change the climate: they are the climate.
8:13
But thankfully, we haven’t seen anything even remotely close to
8:17
that scale in many millions of years.
8:20
So.
8:20
Should you be scared of super-volcanoes?
8:23
Definitely not.
8:25
They’ve been used to frighten many people
8:27
and are overhyped as an unavoidable apocalypse.
8:30
The most famous one, Yellowstone, will erupt again,
8:34
but they will be relatively small eruptions.
8:36
Natural disasters for sure,
8:38
but not enough to devastate the US or come close to ending humanity.
8:43
The chance of a VEI 8 eruption in the next few hundred years is
8:47
less than 2% and more importantly,
8:50
it would not come as a sudden surprise.
8:52
However, less powerful but more frequent eruptions can also do serious damage to our
8:57
civilizations and are in many ways a much greater concern.
9:01
So we must watch for slow changes in magma reservoirs,
9:05
like ground swelling and temperature increases,
9:07
to get an early warning
9:08
that can save the lives of people living the closest to a volcano.
9:13
And there’s time to develop solutions
9:15
that can remove sulfur
9:16
and ash from the stratosphere to eliminate the root cause of the climate disruption
9:20
we’ve seen from previous eruptions.
9:22
Who knows, maybe we’ll even be able to turn this force of destruction into
9:26
an agent for good by exploiting the geothermal energy held in their giant magma
9:31
reservoirs.
9:32
We’ve done this work for
9:33
so many other disasters
9:35
and we are already doing things we could only have dreamed about decades ago,
9:39
like sending a probe to perform our first asteroid redirection test.
9:44
With determination, humanity really can solve anything.
9:48
So while deep below us an angry hell is churning
9:52
and waiting for its moment,
9:54
you can sleep well tonight.
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