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Coal does not react with hydrochloric acid (HCl) as it is a non-metallic substance and does not contain any active metals that can react with acids.
Anthracite coal is mostly inert to acids due to its high carbon content. It is unlikely to react with typical acids like hydrochloric acid or sulfuric acid.
Sulfur is the element present in coal that leads to acid rain when it combines with oxygen and water vapor in the atmosphere to form sulfuric acid. Burning coal releases sulfur dioxide into the air, which can then react with other compounds to create acid rain.
Burning coal releases sulfur dioxide and nitrogen oxides into the atmosphere. These compounds can react with water vapor in the air to form sulfuric acid and nitric acid, which then fall to the ground as acid rain.
Burning gasoline and coal releases pollutants like sulfur dioxide and nitrogen oxides into the atmosphere. These pollutants can react with water vapor in the air to form sulfuric acid and nitric acid, which can then fall to the Earth's surface as acid rain.
Coal does not react with hydrochloric acid (HCl) as it is a non-metallic substance and does not contain any active metals that can react with acids.
Anthracite coal is mostly inert to acids due to its high carbon content. It is unlikely to react with typical acids like hydrochloric acid or sulfuric acid.
Sulfur is the element present in coal that leads to acid rain when it combines with oxygen and water vapor in the atmosphere to form sulfuric acid. Burning coal releases sulfur dioxide into the air, which can then react with other compounds to create acid rain.
Burning coal releases sulfur dioxide and nitrogen oxides into the atmosphere. These compounds can react with water vapor in the air to form sulfuric acid and nitric acid, which then fall to the ground as acid rain.
Burning gasoline and coal releases pollutants like sulfur dioxide and nitrogen oxides into the atmosphere. These pollutants can react with water vapor in the air to form sulfuric acid and nitric acid, which can then fall to the Earth's surface as acid rain.
Emissions of sulfur dioxide (SO2) and nitrogen oxides (NOx) from burning fossil fuels, such as coal and oil, are primarily responsible for acid rain in the northeast US. When these pollutants react with water vapor in the atmosphere, they form sulfuric acid and nitric acid, which then fall to the ground as acid rain.
the sulphur is a base in fossil fuels (in this case coal). when the coal burns the sulphur reacts with the oxygen in the air to produce sulphur dioxide which reacts with water vapour to form acid rain
Coal mining and the burning of coal can contribute to acid rain, but they do so indirectly. When coal is burned in power stations, it releases sulfur dioxide (SO2) and nitrogen oxides (NOx) into the atmosphere. These pollutants can react with water vapor and other chemicals to form sulfuric and nitric acids, leading to acid rain. Therefore, while mining itself doesn't directly cause acid rain, the combustion of coal does play a significant role in its formation.
No, conglomerate does not react to acid.
Yes, burning coal releases carbon dioxide, sulfur dioxide and nitrogen oxides. These all combine with rain to form acid rain. Carbon dioxide actually forms a very weak acid rain but the others are more damaging.
Yes, the burning of fossil fuels like coal releases sulfur dioxide and nitrogen oxides, which can react with water vapor in the atmosphere to form sulfuric acid and nitric acid. These acids can then fall to the ground as acid rain, leading to environmental damage and ecosystem harm.
Coal is a fossil fuel that could supply energy needs for about two hundred years but is linked to acid rain. When coal is burned, it releases sulfur dioxide and nitrogen oxides, which can react with water vapor in the atmosphere to form acids that fall back to Earth as acid rain.