Showing posts with label global dimming. Show all posts
Showing posts with label global dimming. Show all posts

Sunday, 12 April 2020

The coronavirus lockdown and the aerosol masking effect

Is Guy McPherson winding back his aerosol masking effect theory?

I must still be sensitive after my experiences with Guy McPherson and his coterie from last year and early this year because it has taken me 36 hours to even listen to a video that was pointed out to me by a friend.

Much of the discussion was quite reasonable but it was this segment at the 

beginning of the video that caught my attention.



Listen to this next segment and it will become clear that he thought that with the 
end of industrial activity (and somewhere he has said that a 30% reduction was 
sufficient) and the end of global dimming would lead to an increase in 
global temperatures within days.



This is a representation from Arctic News:




The theory contends a change of 2.5C.

Now he appears to be winding all of that back by contending that the changes are not immediate and are mediated by plants (ie. the resulting loss of habitat) so would take some time to become apparent.

He is also advocating for a piecemeal shutdown of the world's industrial activity.

Well, what is the reality?

It seems to me that although China has ostensibly finished its lockdown and is trying to restart its economy the rest of the world is under lockdown at the same time.

America is under lockdown, large parts of Europe are under lockdown, Russia is under lockdown, India is under lockdown.

That, my friends, is for all intents and purposes the entirety of the industrialised world.

Aerosols are (or have) fallen out of the sky which is borne out by the headlines in recent days and the following photos:





McPherson contended that there was a localised increase in temperatures in China without citing any evidence to back that up (when has he ever spoken without citing articles or papers in the past?) just as he contends that France saw an increase in temperatures after moving from coal to nuclear, something that is new to me and which I would like to see evidence of.

Since being forced to go my own way I have come to see that the idea of rapid temperature increases as a result of the end of global dimming is a THEORY (albeit one which has my support).

Now, we a have a sudden shutdown of industrial activity in most of the world we have a perfect laboratory to test whether that theory is correct or not.

If we do not see the sorts of temperature increases he is talking about I wonder what is Prof.McPherson going to say next?

Here is the video discussion in full:


























COVID-19, Aerosol Masking 


Effect, and Economic 



Connections/Trajectories








Tuesday, 24 March 2020

Global dimming and coronavirus

I have been so taken up with reporting on the pandemic that I have neglected to report on this important aspect.

Edge of Extinction: Managing COVID-19 and the Aerosol Masking Effect



From Paul Beckwith

Warming we can expect from Global Dimming reduction due to Coronavirus Industrial Shutdowns

Part one

Part two


Part three



Global Dimming from industrial and transportation aerosols is likely between 0.25C and 1.1C with a best estimate of 0.5C. As global industry/transportation shutters due to our coronavirus actions, the sky clears due to reduced pollution, unmasking global dimming. My educated best guess on the size of the direct effect warming pulse is 0.25C globally if half of industry shuts down, realized as a 0.5C warning over land and 0.125C warming over the oceans. Maybe double these numbers with indirect effects from cloud changes. Also, daily temperature range will increase, specifically due to shutdown of the airline industry.



Thursday, 3 October 2019

The truth of how the truth of climate collapse is being hidden



A DISCUSSION WITH DANE 

WIGINGTON

Seemorerocks



I think this Is a discussion that those who decide what we can and cannot see did not want to get out.

When Dane Wigington and I set out to record a segment on Zoom the first thing that happened was the invitation I sent did not work and Dane could not connect to the meeting. We tried it three times with no success. 

We then moved to Skype where there was an echo to everything I said which morphed into a strange electronic interference.

Starting from then my computer started to act strangely until it was just limping along. 

A few days away from home and from the computer and it seems to be working fine.

On a seperate project I spent a whole day trying to edit a video of myself and to export it onto the desktop, again without success.

Dane and I decided to postpone our discussion but this time I sent the invitation via someone else's email and it worked this time so we were able to get this conversaton recorded.

Here is my discussion: 



THIS VIDEO SHUT OFF SUDDENLY - SOMETHING I THINK IS DOWN TO YOU TUBE. You can get the entire conversation (audio) here: https://soundcloud.com/robin-westenra...


Sunday, 12 May 2019

BBC documentary on Global Dimming

I had this video on my Vimeo account until someone destroyed it. it does not exist anymore so months and years of material has vaporised.

I strongly suggest you download this onto your Hard Drive.

It is being disappeared all over the internet and it is easy to see why


The BBC documentory on Global Dimming



English BBC TV-report “Global Dimming” from the year 2007. How the air pollution generated by industry and airplanes effect the impact of sunlight and the condensation cycles here on earth.

Some climate scientists, like David Travis have created a hypothesis that the condensation trails created by airplanes lead to global dimming. The ongoing global air traffic never allowed the thesis to be proved, but after the 9/11 “terror attacks” no plane took off for three days. That allowed climate scientists to measure that the temperature difference was +1,1 degree higher than at the day before the flights were grounded. Such a high difference in temperature was not measured at that spot in over 30 years.

With interviews of the german climatologist Beate Liepert, the climate-scientist David Travis, the israeli scientist Gerald Stanhill and Dr. Atsumu Ohmura (ETH Zürich), who researches the field of Global Dimming.
en.wikipedia.org/wiki/Global_dimming



Tuesday, 5 February 2019

Aerosol masking effect has hidden as much as half of all warming

The cooling effect of aerosols is so large that it has masked as much as half of the warming effect from greenhouse gases. So aerosols can’t be wiped out. Take them away and temperatures would soar overnight.
A warming world increases air pollution
Climate change is warming the ocean, but it’s warming land faster and that’s really bad news for air quality all over the world

4 February, 2019

Climate change is warming the ocean, but it’s warming land faster and that’s really bad news for air quality all over the world, says a new University of California, Riverside study. 

The study, published February 4 in Nature Climate Change, shows that the contrast in warming between the continents and sea, called the land-sea warming contrast, drives an increased concentration of aerosols in the atmosphere that cause air pollution. 

Aerosols are tiny solid particles or liquid droplets suspended in the atmosphere. 
They can come from natural sources, like dust or wildfires, or human-made sources such as vehicle and industrial emissions. Aerosols affect the climate system, including disturbances to the water cycle, as well as human health. They also cause smog and other kinds of air pollution that can lead to health problems for people, animals, and plants.

A robust response to an increase in greenhouse gases is that the land is going to warm faster than the ocean. This enhanced land warming is also associated with increased continental aridity,” explained first author Robert Allen, an associate professor of earth sciences at UC Riverside. 

The increase in aridity leads to decreased low cloud cover and less rain, which is the main way that aerosols are removed from the atmosphere.

To determine this, the researchers ran simulations of climate change under two scenarios. The first assumed a business-as-usual warming model, in which warming proceeds at a constant, upward rate. The second model probed a scenario in which the land warmed less than expected.

In the business-as-usual scenario, enhanced land warming increased continental aridity and, subsequently, the concentration of aerosols that leads to more air pollution. However, the second model—which is identical to the business-as-usual model except the land warming is weakened—leads to a muted increase in continental aridity and air pollution. Thus, the increase in air pollution is a direct consequence of enhanced land warming and continental drying.

The results show that the hotter Earth gets, the harder it’s going to be to keep air pollution down to a certain level without strict control over the sources of aerosols.

Because the researchers wanted to understand how greenhouse gas warming affects air pollution, they assumed no change to human-made, or anthropogenic, aerosol emissions. 

That’s probably not going to be true because there’s a strong desire to reduce air pollution, which involves reducing anthropogenic aerosol emissions,” cautioned Allen. “So this result represents an upper bound.”

But it also suggests that if the planet keeps warming, larger reductions in anthropogenic aerosol emissions will be required to improve air quality.

The question is what level of air quality are we going to accept,” said Allen. “Even though California has some of the strictest environmental laws in the country we still have relatively poor air quality, and it’s much worse in many countries.”

Unless anthropogenic emission reductions occur, a warmer world will be associated with more aerosol pollution.

The paper, “Enhanced land–sea warming contrast elevates aerosol pollution in a warmer world,” was co-authored by Allen and Taufiq Hassan, a doctoral student at UC Riverside, Cynthia A. Randles, a researcher with Exxon Mobil, and Hui Su, a researcher at NASA’s Jet Propulsion Laboratory.



Aerosol-driven droplet concentrations dominate coverage and water of oceanic low level clouds

This article was written a year ago.

Devil’s Bargain

We already have planet-cooling technology. The problem is, it’s killing us.

By Eric Holthaus

8 February, 2019

A trope of sci-fi movies these days, from Snowpiercer to Geostorm, is that our failure to tackle climate change will eventually force us to deploy an arsenal of unproven technologies to save the planet. Think sun-deflecting space mirrors or chemically altered clouds. And because these are sci-fi movies, it’s assumed that these grand experiments in geoengineering will go horribly wrong.

The fiction, new evidence suggests, may be much closer to reality than we thought.

When most people hear “climate change,” they think of greenhouse gases overheating the planet. But there’s another product of industry changing the climate that has received scant public attention: aerosols. They’re microscopic particles of pollution that, on balance, reflect sunlight back to space and help cool the planet down, providing a crucial counterweight to greenhouse-powered global warming.

An effort to co-opt this natural cooling ability of aerosols has long been considered a potential last-ditch, desperate shot at slowing down global warming. The promise of planet-cooling technology has also been touted by techno-optimists, Silicon Valley types and politicians who aren’t keen on the government doing anything to curb emissions. “Geoengineering holds forth the promise of addressing global warming concerns for just a few billion dollars a year,” wrote Newt Gingrich in an attack on proposed cap-and-trade legislation back in 2008.

But there’s a catch. Our surplus of aerosols is a huge problem for those of us who like to breathe air. At high concentrations, these tiny particles are one of the deadliest substances in existence, burrowing deep into our bodies where they can damage hearts and lungs.

Air pollution from burning coal, driving cars, and using fire to clear land, among other activities, is the fourth-leading cause of death worldwide, killing about 5.5 million people each year. Nearly everybody is at risk, with roughly 92 percent of us living in places with dangerously polluted air. That alone makes reducing air pollution a necessary goal.

And yet we can’t live without aerosols, at least some of them. Natural aerosols — bits of dust, salt, smoke, and organic compounds emitted from plants — are an integral part of our planet’s atmosphere. Clouds probably wouldn’t be able to make rain without them. But as with greenhouse gases, human activity has resulted in too many aerosols (the excess is air pollution), with the bulk of the human-emitted aerosols lingering in the lower atmosphere, worsening their impact on our health. The result is a devil’s bargain: Aerosols are necessary for normal weather and help moderate rising temperatures, but they’re also killing us.

According to a new study, we might be locked in this deadly embrace.  Research by an international team of scientists recently published in the journal Geophysical Research Letters says that the cooling effect of aerosols is so large that it has masked as much as half of the warming effect from greenhouse gases. So aerosols can’t be wiped out. Take them away and temperatures would soar overnight.


Turns out we have been unwittingly geoengineering for decades, and just like in the movies, it’s gone off the rails.

People have been aware of the influence of aerosols for centuries. In the 1200s, Londoners complained about the clouds of coal smoke. In 1783, Benjamin Franklin observed that tiny particles from volcanic eruptions tended to chill the weather. Throughout the late 1800s and early 1900s, dense smoke from coal blocked out daylight in Chicago, Pittsburgh, St. Louis, and scores of other cities.

In 1990, the first report of the Intergovernmental Panel on Climate Change, a select group of the world’s top experts on climate science, said that “there is no doubt that aerosol particles influence the Earth’s climate.”
Mount Pinatubo in the Phillipines erupted the next year, providing a natural laboratory for studying aerosols’ impact. The resulting research gave scientists solid evidence that particles in the atmosphere tended to cool the planet.

In the decades that followed, scientists continued to puzzle over exactly how aerosols from tailpipes and smokestacks alter the weather, in part because the particles are incredibly difficult to study. Scientists have sought out remote corners of the globe far from industrial pollution, like the seas around Antarctica, to research them. Since aerosols are much bigger than air molecules, they tend to fall out of the sky within days or weeks after they’re released — a relatively short lifespan.

There’s also a 10,000-fold range in their sizes and a wide variety of sources, making their behavior relatively unpredictable. Black carbon aerosols from forest fires, for example, tend to suppress cloud formation by warming the air and making tiny water droplets evaporate. Sulfate aerosols from burning coal can make clouds grow bigger and rainstorms stronger. There’s documented evidence that thunderstorms in China vary on a weekly cycle, in tune with factory schedules.

What’s clear is that they’re cooling us off. If we magically transformed the global economy overnight, and air pollution fell to near zero, we’d get an immediate rise in global temperatures of between 0.5 and 1.1 degrees Celsius, according to the new study. (For reference: The climate has warmed about 1.2 degrees Celsius since the start of the Industrial Revolution in the 19th century.) The warming would be concentrated over the major cities of the northern hemisphere, close to where most aerosols are emitted. In the hardest hit parts of highly-urbanized East Asia, for example, the complete removal of aerosols would likely have a bigger effect than all other sources of climate change combined. Temperatures in the Arctic could jump as much as 4 degrees Celsius — a catastrophe that would shove the region further toward a permanently ice-free state.
It is well understood that [aerosols’] presence is masking a substantial amount of greenhouse gas warming,” says Cat Scott, a research fellow at the University of Leeds whose own work has helped scientists understand the cooling effect of aerosols.

This puts our increasingly interdependent global civilization in a tough bind. Get rid of carbon emissions to fight global warming and you get rid of aerosols, pushing temperatures back up.
So what do we do?

In this instance, Hollywood gets it right. Our reluctance to reduce carbon emissions fast enough makes the two goals of eliminating air pollution and limiting global warming mutually exclusive. On our current path, disaster is inevitable. The only choice might be to engage in a delicate and risky gamble. It would involve gradually eliminating pollution from factories and tailpipes; replacing them with artificial aerosols in the upper atmosphere where they’re much less likely to damage human health; and then hope nothing (else) goes seriously awry.

Instead of geoengineering being a last-ditch effort to avert the worst ravages of climate change, it’s going to have to be part of our toolkit to solve the problem.

The good news here is that previous attempts at removing harmful aerosols have proven largely successful, especially in the United States and Europe. The U.S. Clean Air Act, one of the most important fruits of the 1970s environmental movement, led to a sharp and nearly immediate fall in air pollution, likely saving millions of lives.

This is known territory, at least compared to massively reducing CO2 emissions,” says Bjorn Samset, research director at Norway’s Center for International Climate Research and lead author of the study in Geophysical Research Letters.

Not coincidentally, global temperatures began climbing in the late 1970s after the Clean Air Act was passed, ending a relatively stable 30-year period of global temperatures. Those post-war years were marked by the country’s rapid, coal-fueled economic growth, which bathed the northern hemisphere in aerosols.

This pattern is now repeating itself in Asia. Coal-powered China’s rapid economic rise over recent decades, and the resulting aerosol emissions have blackened skies in Shanghai, Beijing and other megacities — and probably contributed to a brief slowdown in the rate of global warming. China has responded to public outrage over the country’s airpocalypse by putting pollution controls in place. And there’s initial evidence that they’re beginning to work.

Samset thinks the immediate health benefits of curbing air pollution mean that China will likely stick to these efforts, in spite of the potential warming effects. “It’s very plausible that Asian aerosol cleanup — which saves lives directly by reducing air pollution — can get prioritized over strong greenhouse gas cuts,” he explains.

If that happens, prepare for another surge in warming.

The second part of the film-inspired formula — pumping artificial aerosols into the upper atmosphere — should also work, in theory. Balloons and airplanes could spray benign aerosols like calcium carbonate (essentially crushed limestone), that would be carried by the wind throughout the upper atmosphere. One recent study estimated it would take 6,700 business jet flights per day — outfitted with spraying equipment — to keep enough aerosols in the stratosphere to cool the climate by one degree Celsius. The cost: $20 billion per year, more or less in-line with Gingrich’s estimate from a decade ago. It’s just that there’s plenty of uncertainty over what would happen next.

What was once the realm of scary science fiction and conspiracy theory is now entering the mainstream of atmospheric study — only those now conducting the experiments are clear about the risks.

Frank Keutsch, a chemist involved with the Harvard experiment told the Harvard Gazette that “geoengineering is like taking painkillers.” They don’t fix the underlying cause and they may even make things worse.

We really don’t know the effects of geoengineering,” he said. “That is why we’re doing this research.”

And if geoengineering with aerosols works to offset warming? That, too, could have disastrous side effects, according to another recent study published in Nature Ecology and Evolution.

Embarking on a planetary-scale aerosol geoengineering project would produce “a wide range of unintended regional consequences,” Samset says. One of the biggest risks is that the cooling would work too well, producing shifts in ecosystems at “unprecedented speeds,” according to the Nature Ecology and Evolution study. That could be a fatal shock to animals and plants already stressed by decades of warming.

I could imagine global conflicts breaking out over these type of actions,” says Susanne Bauer of the NASA Goddard Institute for Space Studies, one of Samset’s co-authors. “On the other hand, I do believe geoengineering must be studied, just to be aware and educated about the possibilities.”

The new findings on aerosols don’t change a simple fact: There’s overwhelming consensus among scientists and policy experts that humanity is not doing enough to address climate change. After 25 years of global negotiations, greenhouse gas emissions are still rising. Extreme weather is now considered the biggest risk to the world economy. And of course the leader of the world’s largest economy thinks the whole thing is a hoax.

Time is running short, but that doesn’t mean we should be reckless. We are fast entering a world in which there are no good options remaining to tackle climate change. Geoengineering is dangerous, but so are aerosols, and so is accelerating climate change. Absent a real-life Hollywood miracle, we’ll likely need to try some interventions that would have been better left to the movies.

Saturday, 19 January 2019

Aerosol masking effect underestimated according to scientific paper

There is almost a blanket denial from the Establishment on the aerosol masking effect (ask. global dimming)

Researchers find cooling effect of aerosols in cumulus and MSC clouds twice as high as thought


Bob Yirka, Phys.org

cloud
18 January, 2018

An international team of researchers has found evidence that suggests the cooling effect of aerosols in cumulus and MSC clouds is twice as high as thought. In their paper published in the journal Science, the group describes their analyses of data from NASA's Moderate Resolution Imaging Spectroradiometer (MODIS) database and what they found.

Global warming is very much in the news of late, as the planet continues to heat up. But one of the factors at play is very seldom mentioned—the role of clouds in cooling the planet. They do so by reflecting heat from the sun back into space. But how much of the reflecting occurs due to water in the clouds and how much is due to aerosols? This is what the researchers wanted to know, because many modern pollutants actually contribute aerosols to clouds. Many of the gritty elements that make their way into the air from coal-burning plants, for example, find their way into clouds. The researchers wondered if it were possible that such pollutants might actually be helping to cool the planet. To find out, they tapped into MODIS, a database of information from satellites constantly circling the Earth, including, among other things, information on cloud cover. For their study, the researchers looked at data describing the Southern Oceans, from the equator to approximately 40°S—over the summers of 2014 to 2017. The team then developed methodologies for deriving pertinent cloud information, such as water content versus aerosol content, and how much heat they were reflecting.

The researchers found that clouds containing more aerosols reflected more heat than prior estimates had suggested—more than twice as much. More specifically, they found that approximately three-quarters of the amount of heat reflected was due to aerosols. They suggest that such a large percentage shows that the radiative cooling capacity of clouds is much more sensitive to the presence of aerosols than has been thought. They note that this is important because climate change models take into account the amount of heat that clouds reflect back into space. It also shows that the heating effect of greenhouse gases is higher than has been thought because it has been mitigated by the impact of aerosols in clouds.
More information: Daniel Rosenfeld et al. Aerosol-driven droplet concentrations dominate coverage and water of oceanic low level clouds, Science (2019). DOI: 10.1126/science.aav0566

Thursday, 27 December 2018

The BBC on global dimming in 2005

'Damned if we do and damned if we don't'

This information seems to have been buried by the makers of the 2005 documentary.
 
Why the Sun seems to be 'dimming'


BBC,
13 January, 2005


We are all seeing rather less of the Sun, according to scientists who have been looking at five decades of sunlight measurements.


They have reached the disturbing conclusion that the amount of solar energy reaching the Earth's surface has been gradually falling.

Paradoxically, the decline in sunlight may mean that global warming is a far greater threat to society than previously thought.
The effect was first spotted by Gerry Stanhill, an English scientist working in Israel.

Cloud changes

Comparing Israeli sunlight records from the 1950s with current ones, Dr Stanhill was astonished to find a large fall in solar radiation.

"There was a staggering 22% drop in the sunlight, and that really amazed me." Intrigued, he searched records from all around the world, and found the same story almost everywhere he looked.

Sunlight was falling by 10% over the USA, nearly 30% in parts of the former Soviet Union, and even by 16% in parts of the British Isles.

Although the effect varied greatly from place to place, overall the decline amounted to one to two per cent globally every decade between the 1950s and the 1990s.

Dr Stanhill called it "global dimming", but his research, published in 2001, met a sceptical response from other scientists.

It was only recently, when his conclusions were confirmed by Australian scientists using a completely different method to estimate solar radiation, that climate scientists at last woke up to the reality of global dimming.



Dimming appears to be caused by air pollution.
 
Burning coal, oil and wood, whether in cars, power stations or cooking fires, produces not only invisible carbon dioxide - the principal greenhouse gas responsible for global warming - but also tiny airborne particles of soot, ash, sulphur compounds and other pollutants.

This visible air pollution reflects sunlight back into space, preventing it reaching the surface. But the pollution also changes the optical properties of clouds.
Because the particles seed the formation of water droplets, polluted clouds contain a larger number of droplets than unpolluted clouds.

Recent research shows that this makes them more reflective than they would otherwise be, again reflecting the Sun's rays back into space.

Scientists are now worried that dimming, by shielding the oceans from the full power of the Sun, may be disrupting the pattern of the world's rainfall.

There are suggestions that dimming was behind the droughts in sub-Saharan Africa which claimed hundreds of thousands of lives in the 1970s and 80s.

There are disturbing hints the same thing may be happening today in Asia, home to half the world's population.

"My main concern is global dimming is also having a detrimental impact on the Asian monsoon," says Professor Veerhabhadran Ramanathan, professor of climate and atmospheric sciences at the University of California, San Diego. "We are talking about billions of people."

Alarming energy

But perhaps the most alarming aspect of global dimming is that it may have led scientists to underestimate the true power of the greenhouse effect.

They know how much extra energy is being trapped in the Earth's atmosphere by the extra carbon dioxide we have placed there.

What has been surprising is that this extra energy has so far resulted in a temperature rise of just 0.6 degree Celsius.

This has led many scientists to conclude that the present-day climate is less sensitive to the effects of carbon dioxide than it was, say, during the ice age, when a similar rise in CO2 led to a temperature rise of six degrees Celsius.


But it now appears the warming from greenhouse gases has been offset by a strong cooling effect from dimming - in effect two of our pollutants have been cancelling each other out.

This means that the climate may in fact be more sensitive to the greenhouse effect than previously thought.

If so, then this is bad news, according to Dr Peter Cox, one of the world's leading climate modellers.

As things stand, CO2 levels are projected to rise strongly over coming decades, whereas there are encouraging signs that particle pollution is at last being brought under control.

"We're going to be in a situation unless we act where the cooling pollutant is dropping off while the warming pollutant is going up.

"That means we'll get reducing cooling and increased heating at the same time and that's a problem for us," says Dr Cox.

Even the most pessimistic forecasts of global warming may now have to be drastically revised upwards.

That means a temperature rise of 10 degrees Celsius by 2100 could be on the cards, giving the UK a climate like that of North Africa, and rendering many parts of the world uninhabitable.

That is unless we act urgently to curb our emissions of greenhouse gases.