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Stationary Air Pollution Smog and Acid Rain
The London Smog Disaster of 1952 ,[object Object],[object Object]
The London Smog Disaster of 1952 ,[object Object],[object Object],[object Object]
Stability of Air ,[object Object],[object Object]
Unstable Air ,[object Object],[object Object],[object Object]
Stable Air ,[object Object],[object Object]
Temperature Inversion ,[object Object],[object Object],[object Object]
Normal Conditions ,[object Object]
Temperature Inversion ,[object Object]
Night Inversions ,[object Object],[object Object],[object Object]
Pressure Inversions ,[object Object],[object Object],[object Object],[object Object]
Components of Classic Smog Particulate Matter ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
 
Particulate Matter ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Original standards did not account for size – larger particles that were not problematic dominated
Particulate Matter:  Health Effects ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Particulate Matter:  Health Effects Normal Lung Polluted Lung
Components of Classic Smog Sulfur Compounds ,[object Object],[object Object],[object Object]
Sulfur Dioxide: Health Effects ,[object Object]
Acids ,[object Object],[object Object],[object Object]
pH Scale ,[object Object],[object Object],[object Object]
Acid Rain ,[object Object],[object Object],[object Object],[object Object]
Nitric and Sulfuric Acid ,[object Object],[object Object],[object Object],[object Object]
Acid Deposition
Wet Deposition ,[object Object],[object Object]
Dry Deposition ,[object Object],[object Object],[object Object],[object Object]
Acid Deposition in the U.S. 2/3 sulfuric 1/3 nitric Coal burning power plants
Regional Acid Rain ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Acid Rain Consequences ,[object Object],[object Object],[object Object]
Fish Populations Fish from Normal Lake Fish from Acidified Lake
Damage to Buildings/Monuments ,[object Object],[object Object],[object Object],[object Object]
Cleopatra’s Needle stood for 3000 years in Egypt, but has experienced significant erosion in New York over 100 years (symbols barely visible now) Egypt New York
Forest Damage ,[object Object],[object Object],[object Object]
Forest Damage
Stationary Source  Pollution Control Systems ,[object Object],[object Object],[object Object]
Stationary Source  Pollution Control Systems ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Cyclone Collector ,[object Object],[object Object],[object Object],[object Object]
Fabric Filter (Baghouse) ,[object Object],[object Object],[object Object],[object Object],[object Object]
Fabric Filter (Baghouse) Baghouse  contains ~15,000 bags
Electrostatic Precipitator ,[object Object],[object Object],[object Object],[object Object],[object Object]
Fly ash accumulation hoppers beneath electrostatic precipitators
B efore-and-after sequence showing the effect of an electrostatic precipitator on stack gas emissions from a coal-fired power plant.
Scrubber ,[object Object],[object Object]
Scrubber ,[object Object],[object Object],[object Object]
Pollution Control Systems Removes  Particulate Matter Removes  SO 2
Effectiveness of Scubbers ,[object Object],[object Object]

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Stationary Air Pollution

Notes de l'éditeur

  1. Nature and Sources of the Pollutant: Particulate matter (PM) is the general term used for a mixture of solid particles and liquid droplets found in the air. Some particles are large or dark enough to be seen as soot or smoke. Others are so small they can be detected only with an electron microscope. These particles, which come in a wide range of sizes ("fine” particles are less than 2.5 micrometers in diameter and coarser-size particles are larger than 2.5 micrometers), originate from many different stationary and mobile sources as well as from natural sources. Fine particles (PM-2.5) result from fuel combustion from motor vehicles, power generation, and industrial facilities, as well as from residential fireplaces and wood stoves. Coarse particles (PM-10) are generally emitted from sources, such as vehicles traveling on unpaved roads, materials handling, and crushing and grinding operations, as well as windblown dust. Some particles are emitted directly from their sources, such as smokestacks and cars. In other cases, gases such as sulfur oxide and SO2, NOx, and VOC interact with other compounds in the air to form fine particles. Their chemical and physical compositions vary depending on location, time of year, and weather.
  2. Health and Environmental Effects: Inhalable PM includes both fine and coarse particles. These particles can accumulate in the respiratory system and are associated with numerous health effects. Exposure to coarse particles is primarily associated with the aggravation of respiratory conditions, such as asthma. Fine particles are most closely associated with such health effects as increased hospital admissions and emergency room visits for heart and lung disease, increased respiratory symptoms and disease, decreased lung function, and even premature death. Sensitive groups that appear to be at greatest risk to such effects include the elderly, individuals with cardiopulmonary disease, such as asthma, and children. In addition to health problems, PM is the major cause of reduced visibility in many parts of the United States. Airborne particles also can cause damage to paints and building materials.
  3. Figure 8.17: A
  4. Figure 8.26 .