Showing posts with label Nitrogen oxide. Show all posts
Showing posts with label Nitrogen oxide. Show all posts

Tuesday, July 28, 2020

AIR POLLUTION - The term "air pollution" is used so commonly that you may not think definitions are necessary. Some sources define smog as the presence of unnatural levels of ground-level ozone, while other sources say things like "fog mixed with smoke." A more modern and precise definition is "a photochemical haze caused by the action of solar ultraviolet radiation on atmosphere polluted with hydrocarbons and oxides of nitrogen especially from automobile exhaust." Officially, air pollution can be defined as the presence of harmful substances in the air, either particulates or microscopic biologic molecules, that pose health hazards to living organisms, such as people, animals or plants. Air pollution comes in many forms and may include a number of different pollutants and toxins in various combinations. Air pollution is far more than a nuisance or inconvenience. Air pollution causes the deaths of approximately 4.2 million people annually worldwide. The two most widespread types of air pollution are the ozone and particle pollution (soot), but air pollution also may include serious pollutants such as carbon monoxide, lead, nitrogen oxides, and sulfur dioxide, volatile organic compounds (VOCs) and toxins such as mercury, arsenic, benzene, formaldehyde, and acid gases. Most of these pollutants are man-made, but some air pollution is due to natural causes, such as ash from volcanic eruptions.

shanghai air pollution
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Air Pollution
What Is Air Pollution?
Definition, Facts, and Environmental Risks
By Larry West




The term "air pollution" is used so commonly that you may not think definitions are necessary. But the issue is more complicated than it first appears. 
Ask most people to define air pollution, and their first response is to describe smog, the smelly stuff that turns the air brown or gray and hovers over urban centers like Los Angeles, Mexico City, and Beijing.
Even here, though, definitions vary.
Some sources define smog as the presence of unnatural levels of ground-level ozone, while other sources say things like "fog mixed with smoke."
A more modern and precise definition is "a photochemical haze caused by the action of solar ultraviolet radiation on atmosphere polluted with hydrocarbons and oxides of nitrogen especially from automobile exhaust."
Officially, air pollution can be defined as the presence of harmful substances in the air, either particulates or microscopic biologic molecules, that pose health hazards to living organisms, such as people, animals or plants.
Air pollution comes in many forms and may include a number of different pollutants and toxins in various combinations.
Air pollution is far more than a nuisance or inconvenience.
According to the World Health Organization, air pollution causes the deaths of approximately 4.2 million people annually worldwide.
What Constitutes Air Pollution?
The two most widespread types of air pollution are the ozone and particle pollution (soot), but air pollution also may include serious pollutants such as carbon monoxide, lead, nitrogen oxides, and sulfur dioxide, volatile organic compounds (VOCs) and toxins such as mercury, arsenic, benzene, formaldehyde, and acid gases.
Most of these pollutants are man-made, but some air pollution is due to natural causes, such as ash from volcanic eruptions. 
The specific composition of air pollution in a particular location depends primarily on the source or sources of pollution.
Automobile exhaust, coal-fired power plants, industrial factories, and other pollution sources all spew different types of pollutants and toxins into the air.
While we think of air pollution as a condition describing outside air, the air quality within your home is equally important.
Cooking vapors, carbon monoxide from heating appliances, off-gassing of formaldehyde and other chemicals from furniture and construction materials, and secondhand tobacco smoke are all potentially dangerous forms of indoor air pollution. 
Air Pollution and Your Health
Air pollution hovers at unhealthy levels in almost every major U.S. city, interfering with people’s ability to breathe, causing or aggravating many serious health conditions, and placing lives at risk.
Many cities worldwide face the same issues, especially in so-called emerging economies such as China and India, where cleaner technologies are not yet in standard usage. 
Breathing ozone, particle pollution or other types of air pollution can seriously damage your health.
Inhaling ozone can irritate your lungs, "resulting in something like a bad sunburn within the lungs," according to the American Lung Association. Breathing particle pollution (soot) can increase your risk of heart attack, stroke and early death, and it may necessitate emergency-room visits for people with asthma, diabetes and cardiovascular disease.
A great many cancers are traced to chemical air pollutants. 
Air pollution is also a problem in developing countries that are not yet fully industrialized.
More than half the world's population still cook their meals with wood, dung, coal or other solid fuels over open fires or on primitive stoves inside their homes, breathing high levels of pollutants such as particulate pollution and carbon monoxide, which results in 1.5 million unnecessary deaths every year.
Who Is Most at Risk?
The health risks of air pollution are greatest among infants and young children, older adults and people with respiratory diseases such as asthma.
People who work or exercise outside also face increased health risks from the effects of air pollution, along with people who live or work near busy highways, factories or power plants.
In addition, minorities and people with low incomes are often disproportionately affected by air pollution because of where they live, which places them at higher risk for illnesses related to air pollution.
Low-income populations often live near industrial or inner-city zones where factories, utilities, and other industrial sources may create unusually high levels of air pollution. 
Air Pollution and the Health of the Planet
If air pollution affects humans, it of course also may also have an impact on animals and plant life.
Many animal species are threatened by high levels of air pollution, and weather conditions created by air pollution affect both animal and plant life.
For example, acid rain caused by the burning of fossil fuels has radically changed the nature of forests in the U.S. Northeast, upper Midwest, and Northwest.
And it is now indisputable that air pollution causes shifts in global weather patterns — the raising of global temperatures, the melting of polar ice sheets and the coming rise in ocean water levels. 
How Can Air Pollution Be Reduced?
The evidence is clear that our personal choices and industrial practices can affect the levels of air pollution.
Cleaner industrial technologies are shown to lower air pollution levels, and it can be demonstrated that anytime more primitive industrial practices increase, so do levels of dangerous air pollution.
Here are some of the obvious ways that humans can, and have reduced air pollution: 
o    Reduction of fossil fuel burning in favor of renewable energy sources. Nations that obtain their electrical power from nuclear, hydroelectric, solar and wind power have lower pollution levels than those that favor the burning of coal or natural gas. 
o    Improved gas mileage in automobiles and the introduction of electric-powered vehicles. California, for example, once plagued with dangerous smog, has greatly improved its air quality through tight controls on automobile emissions standards. Similarly, reduction in the use of other internal combustion engines can reduce air pollution. The shift to battery-operated or electric lawn mowers and lawn equipment, for example, has a demonstrable effect on air quality. 
o    Reduction in agricultural burning — the method of clearing forested areas for agriculture — can reduce the level of smoke and carbon dioxide in the air. This is a particular problem in developing countries. 
o    Reducing wood burning can also reduce levels of smoke in the air. In some communities, wood fireplaces are now outlawed, greatly reducing dangerous levels of smoke in the air. Gas fireplaces are better than wood-burners, and even better are electric fireplaces that burn no fuels at all. 
o    Indoor air quality is improved when tobacco smoking is restricted by ordinance. Citizen pressure to restrict smoking in public places has a real effect on air quality. 
o    Reduction of chemical compounds in paints, adhesives, and solvents has improved the quality of indoor and outdoor air. Always look for low VOC materials for home improvements, and where practical, opt for water-based rather than solvent-based paints and other materials. Look for carpets, fabrics, and furniture that don't off-gas dangerous fumes. 
Controlling pollution is possible, but it requires the individual and political will to do so, and these efforts must constantly be balanced with economic realities, as green technologies are often more expensive, especially when they are first introduced. 
Such choices are in the hands of each individual: for example, do you buy a cheap but dirty automobile or an expensive electric car?
Or are jobs for coal miners more important than clean air? 
These complex questions are not easily answered by individuals or governments, but they are questions that should be considered and debated with eyes open to the real effects of air pollution. 
Larry West
Environmental Journalist
Education
B.A., Journalism and Creative Writing, University of Washington
Introduction
Environmental journalist with 20+ years of experience
Winner, Edward J. Meeman Award for Environmental Reporting
Writer and editor for Go West Strategic Communications since 2002
Experience
Larry West is a former writer for ThoughtCo who contributed articles for five years. He is a principal and professional writer and editor for Go West Strategic Communications. He has written about environmental issues for leading newspapers, magazines, and online publications. 
During his 20-year career in newspapers, Larry was part of an investigative team whose work was a finalist for the Pulitzer Prize. He also received the Meeman Award for national environmental reporting from the Scripps Howard Foundation. Later, Larry served as press secretary and deputy chief of staff for a U.S. Representative and served as communications director for a U.S. Senator. He also managed public affairs for organizations including the Federal Aviation Administration, a global technology company, and one of the largest ports in the United States. In each of those positions, Larry was involved in environmental strategy, policy, and communications. 
Education
Larry studied journalism and creative writing at the University of Washington in Seattle, Washington. He also taught research and writing courses in continuing education programs at the University of Washington and the University of Alaska. 
Awards and Publications
While working as a journalist for "The Seattle Times," Larry's work was awarded the Edward J. Meeman Award for Environmental Reporting by Scripps Howard, and a finalist for the Pulitzer Prize.
ThoughtCo and Dotdash
ThoughtCo is a premier reference site focusing on expert-created education content. We are one of the top-10 information sites in the world as rated by comScore, a leading Internet measurement company. Every month, more than 13 million readers seek answers to their questions on ThoughtCo.
For more than 20 years, Dotdash brands have been helping people find answers, solve problems, and get inspired. We are one of the top-20 largest content publishers on the Internet according to comScore, and reach more than 30% of the U.S. population monthly. Our brands collectively have won more than 20 industry awards in the last year alone, and recently Dotdash was named Publisher of the Year by Digiday, a leading industry publication.
shanghai air pollution

Thursday, May 14, 2020

WHAT YOU NEED TO KNOW ABOUT ACID RAIN - Acid rain is made up of water droplets that are unusually acidic because of atmospheric pollution, most notably the excessive amounts of sulfur and nitrogen released by cars and industrial processes. Acid rain is also called acid deposition because this term includes other forms of acidic precipitation (such as snow). Acidic deposition occurs in two ways: wet and dry. Wet deposition is any form of precipitation that removes acids from the atmosphere and deposits them on Earth’s surface. Dry deposition polluting particles and gases stick to the ground via dust and smoke in the absence of precipitation. Even though dry, this form of deposition is dangerous as well, because precipitation can eventually wash pollutants into streams, lakes, and rivers. Acid deposition can be caused by natural sources such as volcanoes, but it is mainly caused by the release of sulfur dioxide and nitrogen oxide during fossil fuel combustion. When these gases are discharged into the atmosphere, they react with the water, oxygen, and other gases already present there to form sulfuric acid, ammonium nitrate, and nitric acid. These acids then disperse over large areas because of wind patterns and fall back to the ground as acid rain or other forms of precipitation. The gases most responsible for acid deposition are a byproduct of electric power generation and the burning of coal.

Large stand of trees killed by acid rain under a gray sky.
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What You Need to Know About Acid Rain
The Causes, History, and Effects of Acid Rain
By Amanda Briney




Acid rain is made up of water droplets that are unusually acidic because of atmospheric pollution, most notably the excessive amounts of sulfur and nitrogen released by cars and industrial processes.
Acid rain is also called acid deposition because this term includes other forms of acidic precipitation (such as snow).
Acidic deposition occurs in two ways: wet and dry.
Wet deposition is any form of precipitation that removes acids from the atmosphere and deposits them on Earth’s surface.
Dry deposition polluting particles and gases stick to the ground via dust and smoke in the absence of precipitation.
Even though dry, this form of deposition is dangerous as well, because precipitation can eventually wash pollutants into streams, lakes, and rivers.
Acidity itself is determined based on the pH level (the amount of acidity or alkalinity) of the water droplets.
The pH scale ranges from 0 to 14, with a lower pH being more acidic, while a high pH is alkaline, and seven is neutral.
Normal rainwater is slightly acidic, with a pH range of 5.3-6.0.
Acid deposition is anything below that range. It is also important to note that the pH scale is logarithmic, and each whole number on the scale represents a 10-fold change.
Today, acid deposition is present in the northeastern United States, southeastern Canada, and much of Europe, including portions of Sweden, Norway, and Germany.
In addition, parts of South Asia (particularly China, Sri Lanka, and southern India) and South Africa are all in danger of being affected by acid deposition in the future.
What Causes Acid Rain?
Acid deposition can be caused by natural sources such as volcanoes, but it is mainly caused by the release of sulfur dioxide and nitrogen oxide during fossil fuel combustion.
When these gases are discharged into the atmosphere, they react with the water, oxygen, and other gases already present there to form sulfuric acid, ammonium nitrate, and nitric acid.
These acids then disperse over large areas because of wind patterns and fall back to the ground as acid rain or other forms of precipitation.
The gases most responsible for acid deposition are a byproduct of electric power generation and the burning of coal.
As such, man-made acid deposition began becoming a significant issue during the Industrial Revolution and was first discovered by a Scottish chemist Robert Angus Smith in 1852.
In that year, he discovered the relationship between acid rain and atmospheric pollution in Manchester, England.
Although it was discovered in the 1800s, acid deposition did not gain significant public attention until the 1960s, and the term "acid rain" was coined in 1972.
Public attention further increased in the 1970s when the "New York Times" published reports about problems occurring in the Hubbard Brook Experimental Forest in New Hampshire.
Effects of Acid Rain
After studying the Hubbard Brook Forest and other areas, researchers found several important effects of acid deposition on both natural and man-made environments.
Aquatic settings are the most clearly affected by acid deposition, however, because acidic precipitation falls directly into them.
Both dry and wet deposition also runs off from forests, fields, and roads and flows into lakes, rivers, and streams.
As this acidic liquid flow into larger bodies of water, it is diluted.
However, over time, acids can accrue and lower the overall pH of the body of water.
Acid deposition also causes clay soils to release aluminum and magnesium, further lowering the pH in some areas.
If the pH of a lake drops below 4.8, its plants and animals risk death.
It is estimated that around 50,000 lakes in the United States and Canada have a pH below normal (about 5.3 for water).
Several hundred of these have a pH too low to support any aquatic life.
Aside from aquatic bodies, acid deposition can significantly affect forests.
As acid rain falls on trees, it can make them lose their leaves, damage their bark, and stunt their growth.
By damaging these parts of the tree, it makes them vulnerable to disease, extreme weather, and insects.
Acid falling on a forest’s soil is also harmful because it disrupts soil nutrients, kills microorganisms in the soil, and can sometimes cause a calcium deficiency.
Trees at high altitudes are also susceptible to problems induced by acidic cloud cover as the moisture in the clouds blankets them.
Damage to forests by acid rain is seen all over the world, but the most advanced cases are in Eastern Europe.
It’s estimated that in Germany and Poland, half of the forests are damaged, while 30 percent in Switzerland have been affected.
Finally, acid deposition also has an effect on architecture and art because of its ability to corrode certain materials.
As acid lands on buildings (especially those constructed with limestone), it reacts with minerals in the stones, sometimes causing them to disintegrate and wash away.
Acid deposition can also cause concrete to deteriorate, and it can corrode modern buildings, cars, railroad tracks, airplanes, steel bridges, and pipes above and below ground.
What's Being Done?
Because of these problems and the adverse effects of air pollution has on human health, a number of steps are being taken to reduce sulfur and nitrogen emissions.
Most notably, many governments are now requiring energy producers to clean smokestacks with scrubbers that trap pollutants before they are released into the atmosphere and to reduce car emissions with catalytic converters.
Additionally, alternative energy sources are gaining more prominence and funding is being put toward the restoration of ecosystems damaged by acid rain worldwide.

Amanda Briney
Geography Expert
Education
M.A., Geography, California State University - East Bay
B.A., English and Geography, California State University - Sacramento
Introduction
Professional geographer, writer, and scholar
Certificate of Advanced Study in Geographic Information Systems (GIS) 
More than 10 years of experience writing about a broad array of geographical topics
Experience
Amanda Briney is a professional geographer and writer who contributed to ThoughtCo for more than 10 years. She wrote countless articles on a wide range of topics such as an introduction to the subject of geography, reviews of ecotourism, discussions about environmental determinism, and the structure of Latin American cities. The scope of her work also includes other formats such as histories, guides, and fact sheets about many parts of the world. An ultimate scholar, Amanda also contributes work to academic venues and the GIS Lounge, an informational portal about geography.
Amanda enjoys all aspects of geography and mapping but is especially interested in examining natural landscapes through spatial analysis. As such, she holds a certificate in Geographic Information Systems (GIS) from California State University. She also attended Diablo Valley College where she studied air photo interpretation and the formation of the Earth's landscapes.
Education
Amanda Briney received a Master Arts (M.A.) in Geography from California State University–East Bay. She also holds a Bachelor Arts (B.A.) in English and Geography from California State University–Sacramento and earned a Certificate of Advanced Study in Geographic Information Systems (GIS) from California State University.
ThoughtCo and Dotdash
ThoughtCo is a premier reference site focusing on expert-created education content. We are one of the top-10 information sites in the world as rated by comScore, a leading Internet measurement company. Every month, more than 13 million readers seek answers to their questions on ThoughtCo.
For more than 20 years, Dotdash brands have been helping people find answers, solve problems, and get inspired. We are one of the top-20 largest content publishers on the Internet according to comScore, and reach more than 30% of the U.S. population monthly. Our brands collectively have won more than 20 industry awards in the last year alone, and recently Dotdash was named Publisher of the Year by Digiday, a leading industry publication.
https://www.thoughtco.com/acid-rain-definition-1434936





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