answer by juice;.........it destroy your paint on cars buildings.....pollutes ponds and laks ....and destoys forest
Acid snow, also known as acid snowfall or acid precipitation, can have harmful effects on the environment and ecosystems. When acid snow falls, it can lower the pH of soil and bodies of water, which can harm plants, animals, and aquatic life. This can lead to reduced biodiversity, disrupted food chains, and damage to ecosystems. Additionally, acid snow can also damage buildings, infrastructure, and cultural heritage sites.
Fossil fuel combustion releases pollutants like sulfur dioxide and nitrogen oxides, which can react with the atmosphere to form sulfuric acid and nitric acid. These acidic compounds can then mix with precipitation, forming acid rain or snow. The burning of fossil fuels is a major contributor to acid precipitation.
Acid rain forms when pollutants are released into the atmosphere, and it can damage buildings and harm plant and aquatic life. Wind and precipitation can help disperse acid rain over large distances, affecting different regions.
Limestone is the most effective rock type at buffering acid precipitation due to its high calcium carbonate content, which can neutralize acidic compounds. When acid precipitation falls on limestone, it reacts with the calcium carbonate to form less harmful byproducts, helping to reduce the impact of acid rain on the environment.
When fossil Fuels are burned, they release sulfur dioxide and nitrogen oxide into the atmosphere causing air pollution. When these pollutants combine with water in the atmosphere, they form sulfuric acid and nitric acid, which makes acid precipitation.
Another name for acid rain is acid deposition. It refers to any form of precipitation with acidic components, such as sulfuric acid or nitric acid, that can harm the environment.
Acid rain is precipitation that's made acidic by pollution and causes harm to the environment.
yes it will
Acid rain is formed when sulfur dioxide and nitrogen oxides from burning fossil fuels react with water vapor in the atmosphere to form sulfuric acid and nitric acid. These acids then fall to the ground as precipitation, causing harm to the environment and ecosystems.
Acid snow, also known as acid snowfall or acid precipitation, can have harmful effects on the environment and ecosystems. When acid snow falls, it can lower the pH of soil and bodies of water, which can harm plants, animals, and aquatic life. This can lead to reduced biodiversity, disrupted food chains, and damage to ecosystems. Additionally, acid snow can also damage buildings, infrastructure, and cultural heritage sites.
acid precipitation is an agent of -------weathering
Acid precipitation is rain, snow, or fog with a pH lower than 5.6. It is important to living organisms because it can harm plants, animals, and aquatic ecosystems by causing soil and water to become more acidic, which affects nutrient availability and can harm organisms directly through toxicity.
Fossil fuel combustion releases pollutants like sulfur dioxide and nitrogen oxides, which can react with the atmosphere to form sulfuric acid and nitric acid. These acidic compounds can then mix with precipitation, forming acid rain or snow. The burning of fossil fuels is a major contributor to acid precipitation.
Acid precipitation weather rocks faster than normal precipitation because acid precipitation has a higher concentration of acid than normal precipitation.
Acid rain forms when pollutants are released into the atmosphere, and it can damage buildings and harm plant and aquatic life. Wind and precipitation can help disperse acid rain over large distances, affecting different regions.
Acid precipitation is an agent of environmental harm, as it can lead to the acidification of water bodies, soil degradation, and damage to plant and animal life. It is primarily caused by emissions of sulfur dioxide and nitrogen oxides from human activities such as burning fossil fuels.
Acetic acid is added during barium precipitation to help maintain a slightly acidic environment, which is necessary for the successful precipitation of barium sulfate. The acetic acid helps to prevent the formation of any other barium compounds that may interfere with the precipitation process, ensuring a more accurate determination of sulfate ions in the sample.