03/10/2017

In A Warming World, Keeping The Planes Running

New York Times - Mike Ives

HONG KONG — Airports are a major global business, part of an industry that by one estimate transports the equivalent of nearly half the world’s population in a single year.
But the world’s airports were largely designed for an older era — a cooler one.
Illustration Andrew Roberts


Many were built near seacoasts or river deltas to minimize disturbances to humans or avoid natural obstacles like mountains. Others have short runways because of space restrictions, while planners in the past gave little thought to how extreme temperatures could affect airplanes and airports.
Climate change is making airport planners think again.
Low-lying airports may become increasingly vulnerable to storm surges. Hotter temperatures may cause tarmac to melt, restrict takeoff weights or require heavier aircraft to take off later in the day.
Now governments, companies and experts around the world are grappling with what could be a very expensive problem. Keeping the industry aloft requires colossal investment — $1.1 trillion in airport infrastructure projects are planned or underway, the CAPA Center for Aviation, a consulting firm based in Australia, said in July.
“Airports understand well that climate change could have some far-reaching effects and that they are not immune to them,” said Angela Gittens, the director general at Airports Council International’s headquarters in Montreal.

Rising Waters
Climate scientists predict that sea levels could rise by as much as six or seven feet this century, and aviation experts say that even a much smaller rise could lead to more flooding at runways or terminals.
Preliminary studies indicate that dozens of airports are at risk. A 2009 report by Eurocontrol, a Brussels-based agency that coordinates air traffic management across Europe, estimated that more than 30 major European airports sat on coastlines or within river floodplains.
Some airports are already taking such warnings to heart.
In Hong Kong, officials say that a project to build a third airport runway on soon-to-be reclaimed land was influenced by climate and sea-level projections made in 2014 by the Intergovernmental Panel on Climate Change. They say the $18 billion runway will have a sea wall that stands at least 21 feet above the waterline and can withstand 100-year storms, as well as a drainage system that is designed to handle rare floods.
In Norway, about 20 of the country’s 45 state-run airports are “quite exposed” to potential sea level rise, said Olav Mosvold Larsen, a climate change adviser at Avinor, the state-run airport operator. Avinor has decided to build all future runways at least 23 feet above sea level.
Sea level rise and storm surges have a “somewhat-nearer-term flavor” for airports than other climate-related risks, such as rising temperatures, said Terence R. Thompson, a senior fellow at the Logistics Management Institute in Virginia who studies links between aviation and climate change.
“You’ve got this complex, multisegment industrial site, and it’s not just ‘Does the runway go underwater?’” he said. For example, the flooding of a taxiway could force pilots to take longer taxi routes from terminals to runways, causing delays at one airport that ripple across many others, he said.

Hot Runways
Climate scientists predict a global increase this century in the annual number of hot days and heat waves, and some airport planners worry that climate change could push airport infrastructure to the limits of its operating capacity.
Runways in northern Canada have already been damaged by thawing permafrost, for example, leading officials to commission permafrost studies ahead of a recent $240 million renovation of Iqaluit International Airport in the Canadian Arctic.
Concrete runway slabs at other airports may buckle from extreme heat, as similar slabs occasionally do on highways, and there is “serious concern” that asphalt on aprons and parking areas could melt, said Herbert Pümpel, a co-chairman of the World Meteorological Organization’s Expert Team on Aviation, Science and Climate.
Then there are concerns about aircraft.
A plane’s maximum operating temperature depends on a variety of factors, including airport elevation. But as temperatures climb far above 100 degrees Fahrenheit, airlines can begin suspending operations for certain types of planes, as American Airlines did in June when daytime highs in Phoenix climbed to about 120 degrees.
Captain Rajeev Bajpai, Air India’s general manager of operations for the country’s western region, said that extreme heat was already an aviation problem in notoriously hot countries like Kuwait, where planes can be grounded on summer days because their electronics automatically shut down.
“You can’t even get the flight going in the sense that you can’t even prepare the cockpit,” he said.

Longer Runways
Illustration Andrew Roberts
Hot temperatures cause air density to decrease, reducing lift and forcing airlines to either reduce weight on flights or move departures to cooler hours of the day. Experts say that will most likely pose a long-term economic challenge for airports, especially ones with humid climates, high altitudes or short runways.
The cost of having a short runway in a hot place became clear to planners at Brisbane Airport in Australia, who studied climate models and airlines’ financial data in 2009 while designing the airport’s second runway, said Karyn Rains, the project’s former environment manager.
They discovered that because of an expected spike in the number of annual 86-plus-degree days in Brisbane, airlines would be forced to spend more than $79 million per year by 2035 if the second runway were 8,202 feet, rather than 10,826 feet. Ms. Rains said that was mostly because larger planes would be unable to land at an 8,202-foot runway under certain hot weather conditions, and would need to burn extra fuel while waiting to land at the privately owned airport’s original, 11,811-foot runway.
In that sense, Ms. Rains said, spending $53.5 million for an extra 2,624 feet of tarmac, or 7.8 percent of the second runway’s total estimated cost, made good business sense. “You ignore climate change impacts at your peril, really,” she said.

Lighter Loads
A study earlier this year in the journal Climatic Change, based on modeling for 19 major airports, found that 10 percent to 30 percent of annual flights departing at the hottest time of the day may require weight restrictions by the middle or end of this century.
The reductions would be small, perhaps 4 percent or less on average, the study said. But a reduction of even one-half of a percent could mean, for example, that an airline had to trim 722 pounds, or about three passengers, from a 160-passenger flight on a Boeing 737-800, possibly imposing a substantial economic burden over time.
“It’s not a catastrophic thing that’s going to cause great disruption, but it imposes a cost on the whole aviation system,” said Ethan D. Coffel, the study’s lead author and a doctoral student at Columbia University. He said that the Middle East may be hardest hit because it has the world’s hottest weather and a high percentage of long-haul flights, which often take off near maximum weight capacity.
But weight restrictions could soon become more common in countries with temperate climates as well, experts said, and airports with short runways may find themselves at a competitive disadvantage.

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02/10/2017

India Taps Solar, Storage To Ensure All Homes Have Power In 2018

RenewEconomy - 

Source: India Energy Storage Alliance
The Indian government has pledged to broaden the roll-out of solar and battery storage to households without power in rural and remote towns and villages, as a part of a newly launched $2.5 billion project to electrify all of the country’s households by the end of 2018.
At the launch of the project on Monday, Indian PM Narendra Modi said around one-quarter of all homes in the country were yet to be electrified, meaning about 300 million of India’s 1.3 billion people are still not hooked up to the grid.
As part of the program, the government will identify households eligible for free electricity connections, with no fee charged for the connection of “poor citizens,” the PM said.
But the majority of the program’s budget – more than 80 per cent – would go towards rural households, where solar power packs of 200-300W will be added with battery banks to un-electrified homes, along with LED lights, a DC fan and a DC power plug, and repair and maintenance for five years.
As PV-Tech reports, Modi’s latest announcement appears to be a major extension of the plan announced last December by former energy minister Piyush Goyal, that more than 16,000 Indian households across 800 remote villages would be given a solar panel, with an eight-hour battery storage backup.
When the government first started rolling out its rural electrification program, known as DDUGJY, there were more than 18,000 villages identified as un-electrified.
The scale of the new plan, and its focus on solar and battery storage, also undermines one of the federal government’s key arguments in favour of digging up and exporting more Australia coal: that it is a vital source of “cheap electricity” for India’s poor.
“India has a massive program of expanding electrification across the country and Australian coal has a very big role to play in that,” Prime Minister Malcolm Turnbull said in April when he visited the sub-continent and met with Indian coal billionaire Gautam Adani, whose company is, still, deliberating its final investment decision on the $21-billion Carmichael coal mine in Queensland’s Galilee basin – Australia’s largest, if built.
But that’s not the view of many reports and energy industry analysts. In February, for instance, a report from The Energy and Resources Institute (Teri) in New Delhi, suggested that renewables and batteries could undercut coal in India in less than a decade, as long as costs of the technologies continued on their current trajectory.
And if that happens, the report adds, it will reduce the country’s carbon dioxide emissions by about 600m tonnes, or 10 per cent, after 2030.
One of the key goals of India’s solar and battery storage roll-out, which will be coordinated by the state-run Rural Electrification Corporation, is to cut use of kerosene in rural and remote areas, which is both a fire risk and a heavy pollutant.
The states are expected to complete the electrification by December 2018.

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Donald Trump Is A Threat to Survival of Life On Earth: If Nuclear War Doesn't Get Us, Falling Oxygen Levels Will

Newsweek - *


Extreme Weather Amid Daunting Climate Report

Since President Donald Trump announced the U.S. withdrawal from the Paris Climate Agreement, the world has been looking towards other countries to pick up global leadership on climate change action.
France recently announced that it plans to become the first country to phase out all oil and gas exploration and production by 2040, according to a draft bill. What does this signal for markets and other governments? Is France stepping forward into a new era of global leadership on climate change?
Under the Paris Agreement on climate change, countries agreed to keep the global temperature rise to well below 2 degrees of warming and strive for 1.5 degrees. Impacts are still expected at 2 degrees of warming, but at least some of the world’s coral reefs could survive. Beyond this level, coral reefs, which a quarter of the world’s marine life and half a billion people depend on, are expected to be completely wiped out.
At the United Nations this week, French President Emmanuel Macron described the Paris climate deal as a “pact between generations” and has told Donald Trump that the climate deal will not be renegotiated. Macron also stated that the “door will always remain open” for America to re-join, and suggested he hopes to convince Trump to do so.
The terrifying math of climate change shows us that in order to stay within the 2-degree safety limit, the majority of the world’s existing fossil fuel reserves need to stay in the ground and not be burned.  Macron’s plans to rule out fossil fuel exploration are essential, as exploration for new fossil fuels risks pushing the world over dangerous thresholds. Climate change is an existential threat.
At six degrees of warming, which we could get if all remaining fossil fuels were burned, falling oxygen levels could be a threat to the survival of life on earth. France’s new policy to phase out oil and gas exploration is absolutely in line with the science, and if anything, the year of 2040 is too late – exploration needs to be ruled out earlier.
French President Emmanuel Macron in Paris on May 14. Alain Jocard/Pool/File Photo/Reuters
France’s leadership on climate change
In the past year Macron has showed great leadership on climate change. After Trump’s withdrawal from the global climate agreement, Macron strongly rebuked Trump on this, and his twitter statement to “make the planet great again” rapidly went viral.
In July, Macron announced that France would ban sales of petrol and diesel cars by 2040, and this was followed by a similar announcement by the UK to tackle air pollution. Germany is considering a similar policy, while Norway had already decided it will only allowing sales of 100% electric or plug-in hybrid cars by 2025. China is also looking at ending the sales of fossil fuel cars, following France and the UK.
France is also a leader in the area of green finance, with the launch of a 7 billion euro green bond earlier this year - the largest and longest issuance of green bonds to date.  France has been a pioneer in the green bond market, and has also been the first nation to introduce mandatory climate and carbon risk reporting from institutional investors, pension funds and insurance companies.
All this makes Paris more competitive as a green finance hub, and the City of London may have to take notice of this amid the risk that Brexit-related disruption leads to the relocation of financial institutions.
With the costs of clean technology falling, financial centers including Paris and London have now been laying out plans to seize the green finance opportunity, notably by mobilizing the capital required for the low-carbon transition. There remains the risk that the UK could be losing its influence on important global issues due to the major distraction of Brexit.
Protesters carry signs during the Peoples Climate March at the White House in Washington, U.S., April 29, 2017. REUTERS/Joshua Roberts
Wider impacts: Markets, banks, governments
France is not a major producer of oil, so the major effect is in terms of signaling for markets around the world.  For example, it was previously found that France had one of the largest shale gas reserves in Europe, but it has already passed a ban on fracking.  In 2011, France voted to ban fracking outright, taking into account public opinion.
In fact, fossil fuel exploration is a risky business financially, even aside from the impact on the planet. Several major banks already do not invest in oil and gas exploration, due to the financial risks involved. The African Development Bank and Asian Development Bank already rule out investing in exploration of fossil fuels.
Other governments must now take up the mantle and ban exploration of fossil fuels, to reduce climate risks.  The unprecedented power of hurricanes over the past month, with Harvey, Irma, and now Maria, have shown that the costs of climate change will be dramatic. It is not possible to “adapt” – we must reduce emissions, and fast.
As such extreme weather events are expected to intensify over coming years, people will recognize which governments are protecting their people, and which leaders have failed to do so.
Governments that step up to reduce climate risks and take advantage of green growth opportunities will reap the rewards in terms of national prosperity. Ultimately, Macron action’s will stand the test of time, while Trump is set to find himself increasingly isolated.

*Dr. Helena Wright is a senior policy adviser at independent sustainability organization E3G.

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'Stuck In The Dark Ages': Pacific Island Leader Vents After Australia's Emissions Hit Record High

Fairfax - Nicole Hasham

Desperate Pacific islands at risk of sinking beneath the sea say Australia is "stuck in the Dark Ages" by relying on fossil fuels, in response to alarming data showing this nation's energy emissions have hit record highs.
The outcry from Australia's smallest neighbours comes just weeks after Prime Minister Malcolm Turnbull visited Samoa and reportedly promised Pacific leaders that he understood "very clearly" the threat of sea level rise to low-lying islands.

Greenhouse gases: not just a bunch of hot air
From tracing the exact source of CO2 in our atmosphere to measuring the earth's "carbon budget", the scientists studying climate change know a lot more about the greenhouse effect than you might think.

As Fairfax Media reported on Friday, a national audit prepared for The Australia Institute by energy analyst Hugh Saddler shows Australia's emissions from energy combustion reached a record high in the year to June, driven largely by petroleum, and specifically diesel, consumption.
The audit showed the increase in Australia's annual retail diesel emissions in the year to June on its own exceeded the total annual emissions of any Pacific nation.
Tuvalu Prime Minister Enele Sopoaga, whose tiny nine-island nation has become the poster child for the threat of sea-level rise, on Friday vented his frustration at the audit findings.
"While the rest of the world is moving ahead to renewable energy, Australia is stuck in the Dark Ages with its reliance on dirty fossil fuels. This is bad news for the Pacific", he said, adding that Australia's continued mining of coal was "extremely disappointing".
Genevieve Jiva, spokeswoman for the Pacific Islands Climate Action Network, said the findings would prompt Pacific leaders to exert further pressure on Australia at international climate talks in Bonn, Germany, in November. Fiji will chair the talks.
"It isn't the Pacific way to be confrontational, but Australia needs to be told that climate change is destroying our islands and way of life," Ms Jiva said.
Prime Minister Malcolm Turnbull and Environment and Energy Minister Josh Frydenberg.  Photo: Andrew Meares
"This is happening right now and needs action right now. Not in 20 years' time, not after the next Australian election, but right now."
Britain and France will ban the sale of new petrol and diesel-powered cars from 2040, to curb air pollution and emissions and encourage the uptake of electric cars.
A scene in Tuvalu after Cyclone Pam hit in 2015. Photo: Powersmart Solar/Facebook
Strategy.Policy.Research principal Philip Harrington, an expert consultant to federal, state and local governments, said his recent research showed electric fleet cars could be very cost effective but there were few models available for sale in Australia.
"Among the industry stakeholders that we spoke to, it's widely acknowledged that ... there are no incentives for electric vehicles in Australia, whereas almost every other country in the world does [offer incentives]. Therefore electric vehicle manufacturers don't bother to bring them here," he said.
Tuvalu Prime Minister Enele Sopoaga, whose tiny nine-island nation has become the poster child for the threat of sea-level rise, vented his frustration at the audit findings. Pictured: Fualopa motu in Funafuti Conservation Area, Tuvalu.  Photo: Louise Southerden
Mr Harrington, said "bulk purchase initiatives" from fleet car buyers, such as governments and private companies, would create a guaranteed market and "provide enough confidence about sales for the global vehicle industry to be bothered bringing electric cars here".
The audit findings on road transport emissions suggest the electricity sector, where emissions cuts can most easily be made, must shoulder an even greater share of the emissions reduction burden if Australia is to meet its international obligations under the Paris climate deal.
Tuvaluan girls outside church.  Photo: Louise Southerden
Environment and Energy Minister Josh Frydenberg said on Friday the government established a ministerial forum on vehicle emissions to consider possible reforms to Australia's fuel efficiency, fuel quality and noxious emissions standards, and "has a strong record of meeting its international emissions reduction commitments".

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01/10/2017

We’ve Been Risking Everything By Ignoring Climate Change, So Maybe It’s Time For A Different Kind Of Gamble

Washington Post - Tom Toles

(Tom Toles)
When a battered woman walks into an emergency room, is it inappropriate to find out how she got hurt? Or is it enough to treat her cuts and broken facial bones and send her back for more?
With regard to climate damage, we survey the cataclysm on Puerto Rico and treat the wounds. Actually, we are hardly doing that, because the wounds are so astonishingly severe. It's as though we don't know even how to think about it, because we don't. We won't ask how it happened; we never ask. We simply suggest that people turn the other cheek and brace for more of the same.
Let's saunter back a few years to the balmy days when climate change was widely considered nothing but a source of easy joshing. "If this is climate change," we would say on a warm winter day, "I'll take it!"
Now we have an entire U.S. territory, shredded from end to end, without power or agriculture left functioning. This is climate change. Are we going to take this?
Maybe. Because somehow even the most stunning and painful evidence of warming doesn't register as compelling. Back in the jokey days, it was considered tiresome in the extreme to point out that, yes, this is a beautiful day, but eventually this will turn into devastation. Oh, Gloomy Gus! Oh, Debbie Downer! Oh, Crabby Cassandra!
For our elected officials, it is still a big joke. They still have cover from the denier industry. Climate changes all the time! This way and that! Too hot, too cold, always something! This kind of talk is very cheap — in the sense of a fool's economy. It's cheap now, but bankrupting later. (See price tag on fixing Puerto Rico.)
Maybe it's time to make this cheap talk more costly. Maybe we should require elected and appointed officials to put their own money on the line along with their assurances.
With something more costly than ordinary dissembling involved, and an actual price to pay, they might suddenly see that pricing carbon looks like a far better bet.

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How Did That Get There? Plastic Chunks On Arctic Ice Show How Far Pollution Has Spread

The Guardian - 

Discovery by UK scientists prompts fear that melting ice will allow more plastic to be released into the central Arctic Ocean – with huge effects on wildlife 
Plastic pollution on an ice floe in the middle of the Arctic Ocean. Photograph: Conor McDonnell
A British-led expedition has discovered sizeable chunks of polystyrene lying on remote frozen ice floes in the middle of the Arctic Ocean.
The depressing find, only 1,000 miles from the north pole, is the first made in an area that was previously inaccessible to scientists because of sea ice. It is one of the most northerly sightings of such detritus in the world’s oceans, which are increasingly polluted by plastics.
A team of scientists drawn from the UK, US, Norway and Hong Kong, headed by marine biologist Tim Gordon of Exeter University, said the discovery confirmed just how far plastic pollution has spread. It has prompted fears that plastic waste is flowing into the Arctic as the ice melts because of climate change. The thaw is simultaneously releasing plastic that has long been trapped in the ice.
The scientists, who were on the explorer Pen Hadow’s Arctic Mission attempt to sail to the north pole, were surprised to discover the blocks of polystyrene many hundreds of miles from land in areas that were, until recently, covered by ice all year round. They found two large pieces on the edge of ice floes between 77° and 80° north, in the middle of the international waters of the central Arctic Ocean.
“For the 25 years I have been exploring the Arctic I have never seen such large and very visible items of rubbish,” said Hadow, the only person to have trekked solo, without resupply, from Canada to the geographic north pole. “The blocks of polystyrene were just sitting on top of the ice.”
The scientists fear the thaw is releasing plastic trapped by the ice into the Arctic Ocean. Photograph: Conor Mcdonnell/Conor McDonnell
“Finding pieces of rubbish like this is a worrying sign that melting ice may be allowing high levels of pollution to drift into these areas,” Gordon said. “This is potentially very dangerous for the Arctic’s wildlife.”
The pioneering expedition – using two yachts – sailed further into the international waters of the Central Arctic Ocean than any previous navigation attempt without icebreakers. Rates of ice melt have increased dramatically due to climate change, with 40% of the central Arctic Ocean now navigable in summer.
Estimates suggest that there are more than 5 trillion pieces of plastic floating on the surface of the world’s oceans. It has been claimed that there is now enough plastic to form a permanent layer in the fossil record. Dr Ceri Lewis, scientific adviser to the expedition based at the University of Exeter, has previously warned that people produce around 300 million tons of plastic a year, roughly the same weight as all the humans on the planet. Around half of all plastic produced is used once and then thrown away.
A significant concern is that large plastic pieces can break down into “microplastics” – tiny particles that are accidentally consumed by filter-feeding animals. The particles remain in animals’ bodies and are passed up the food chain, threatening wildlife at all levels from zooplankton to apex predators such as polar bears. In an attempt to gauge the presence of microplastics in Arctic waters, the scientists intend to test samples of seawater they collected in nets with holes smaller than a millimetre across.
‘The blocks of polystyrene were just sitting on top of the ice,’ said Pen Hadow. Photograph: Conor Mcdonnell @conormcdphoto/Conor McDonnell
“Many rivers that are often a source of plastic pollution lead into the Arctic Ocean, but plastic pollution has been literally trapped into the ice,” Lewis said. “Now the ice is melting we believe microplastics are being released into the Arctic. The Arctic is thought to be a hot spot of microplastics accumulation due to the number of rivers that empty into the Arctic basin, yet we have very little data to support this idea in the more northerly parts of the Arctic Ocean.” He added that the data the expedition was collecting was important because the Arctic supports many fisheries which could be affected by microplastics.
Some projections indicate that the entire Arctic Ocean will be ice-free in summer by 2050. This will allow human exploitation of the newly opened waters and bring a range of fresh threats to Arctic wildlife.
“The Arctic Ocean’s wildlife used to be protected by a layer of sea ice all year round,” Gordon said.
“Now that is melting away, this environment will be exposed to commercial fishing, shipping and industry for the first time in history. We need to seriously consider how best to protect the Arctic’s animals from these new threats. By doing so, we will give them a fighting chance of adapting and responding to their rapidly changing habitat.”
The scientists discovered plastic pollution lying on remote frozen ice floes in the middle of the Arctic Ocean. Photograph: Conor McDonnell
The team is also investigating the impact of human-made noise pollution on Arctic marine life and mammals, using underwater loudspeakers and microphones to understand how sound travels through the polar seas, and how this might be affected by ice loss. Arctic cod, beluga whales, ringed seals and walruses use a range of sounds to communicate in the underwater darkness. Narwhals hunt for fish a mile below the surface using biosonar, emitting 1,000 high-pitched clicks every second and listening to their reflected echoes – much the same way that bats do.
“It is critical that we establish baseline natural recordings in this newly exposed oceanic environment,” said Professor Steve Simpson, an expert in bioacoustics and noise pollution at Exeter University. “These recordings will allow us to understand how human activities are changing the soundscape of the summer Arctic, and assess the success of future noise management in this unique acoustic world.”
On-board wildlife biologist Heather Bauscher said increasing ice melt could have serious consequences for the whole Arctic ecosystem. “Quality research and the development of sound management strategies are necessary to protect the Arctic’s wildlife: this is crucial at a time of such dramatic change,” she said.

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We May Survive The Anthropocene, But Need To Avoid A Radioactive ‘Plutocene’

The Conversation - 

A nuclear blast and runaway climate change could propel us into the Plutocene. mwreck/Shutterstock.com
On January 27, 2017, the Bulletin of the Atomic Scientists moved the arms of its doomsday clock to 2.5 minutes to midnight – the closest it has been since 1953. Meanwhile, atmospheric carbon dioxide levels now hover above 400 parts per million.
Why are these two facts related? Because they illustrate the two factors that could transport us beyond the Anthropocene – the geological epoch marked by humankind’s fingerprint on the planet – and into yet another new, even more hostile era of our own making.
My new book, titled The Plutocene: Blueprints for a post-Anthropocene Greenhouse Earth, describes the future world we are on course to inhabit, now that it has become clear that we are still busy building nuclear weapons rather than working together to defend our planet.
I have coined the term Plutocene to describe a post-Anthropocene period marked by a plutonium-rich sedimentary layer in the oceans. The Anthropocene is very short, having begun (depending on your definition) either with the Industrial Revolution in about 1750, or with the onset of nuclear weapons and sharply rising greenhouse emissions in the mid-20th century. The future length of the Plutocene would depend on two factors: the half-life of radioactive plutonium-239 of 24,100 years, and how long our CO₂ will stay in the atmosphere – potentially up to 20,000 years.
During the Plutocene, temperatures would be much higher than today. Perhaps they would be similar to those during the Pliocene (2.6 million to 5.3 million years ago), when average temperatures were about 2℃ above those of pre-industrial times, or the Miocene (roughly 5.3 million to 23 million years ago), when average temperatures were another 2℃ warmer than that, and sea levels were 20–40m higher than today.
Under these conditions, population and farming centres in low coastal zones and river valleys would be inundated, and humans would be forced to seek higher latitudes and altitudes to survive – as well as potentially having to contend with the fallout of nuclear conflict. The most extreme scenario is that evolution takes a new turn – one that favours animals best equipped to withstand heat and radiation.

Climates past
While we have a range of tools for studying prehistoric climates, including ice cores and tree rings, these methods do not of course tell us what the future holds.
However, the basic laws of physics, the principles of climate science, and the lessons from past and current climate trends, help us work out the factors that will dictate our future climate.
Broadly speaking, the climate is shaped by three broad factors: trends in solar cycles; the concentration of atmospheric greenhouse gases; and intermittent events such as volcanic eruptions or asteroid impacts.
Solar cycles are readily predicted, and indeed can be seen in the geological record, whereas intermittent events are harder to account for. The factor over which we have the most control is our own greenhouse emissions.
CO₂ levels have previously climbed as high as 2,000 parts per million (ppm), most recently during the early Eocene, roughly 55-45 million years ago. The subsequent decline of CO₂ levels to just a few hundred parts per million then cooled the planet, creating the conditions that allowed Earth’s current inhabitants (much later including humans) to flourish.
But what of the future? Based on these observations, as reported by the Intergovernmental Panel on Climate Change (IPCC), several projections of future climates indicate an extension of the current interglacial period by about 30,000 years, consistent with the longevity of atmospheric CO₂.
If global warming were to reach 4℃, as suggested by Hans Joachim Schellnhuber, chief climate advisor to the German government, the resulting amplification effects on the climate would pose an existential threat both to nature and human civilisation.
Barring effective sequestration of carbon gases, and given amplifying feedback effects from the melting of ice sheets, warming of oceans, and drying out of land surfaces, Earth is bound to reach an average of 4℃ above pre-industrial levels within a time frame to which numerous species, including humans, may hardly be able to adapt. The increase in evaporation from the oceans and thereby water vapour contents of the atmosphere leads to mega-cyclones, mega-floods and super-tropical terrestrial environments. Arid and semi-arid regions would become overheated, severely affecting flora and fauna habitats.
The transition to such conditions is unlikely to be smooth and gradual, but may instead feature sharp transient cool intervals called “stadials”. Increasingly, signs of a possible stadial are being seen south of Greenland.
A close analogy can be drawn between future events and the Eocene-Paleocene Thermal Maximum about 55 million years ago, when release of methane from Earth’s crust resulted in extreme rise in temperature. But as shown below, the current rate of temperature rise is far more rapid – and more akin to the planet-heating effects of an asteroid strike.
Rate of global average temperature rise during (1) the end of the last Ice Age; (2) the Paleocene-Eocene Thermal Maximum; (3) the current bout of global warming; and (4) during an asteroid impact. Author provided
Mounting our defence
Defending ourselves from global warming and nuclear disaster requires us to do two things: stop fighting destructive wars, and start fighting to save our planet. There is a range of tactics we can use to help achieve the second goal, including large-scale seagrass cultivation, extensive biochar development, and restoring huge swathes of the world’s forests.
Space exploration is wonderful, but we still only know of one planet that supports life (bacteria possibly excepted). This is our home, and there is currently little prospect of realising science fiction’s visions of an escape from a scorched Earth to some other world.
Yet still we waver. Many media outlets operate in apparent denial of the connection between global warming and extreme weather. Meanwhile, despite diplomatic progress on nuclear weapons, the Sword of Damocles continues to hang over our heads, as 14,900 nuclear warheads sit aimed at one another, waiting for accidental or deliberate release.
If the clock does strike nuclear midnight, and if we don’t take urgent action to defend our planet, life as we know it will not be able to continue. Humans will survive in relatively cold high latitudes and altitudes. A new cycle would begin.

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Lethal Heating is a citizens' initiative