fuel burning except in vehicles
Sulfur oxides are responsible for causing air pollution and acid rain. They are released into the atmosphere primarily from burning fossil fuels, such as coal and oil, and can have harmful effects on human health, ecosystems, and infrastructure. Efforts are made to reduce sulfur oxide emissions through regulations and technology implementation.
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.
Sulfur oxides and nitrogen oxides in the air primarily come from the burning of fossil fuels in vehicles, power plants, and industrial processes. When fuel containing sulfur and nitrogen is burned, these elements combine with oxygen in the air to form sulfur oxides (SOx) and nitrogen oxides (NOx), which are then released into the atmosphere.
Nitrogen oxides are produced naturally by lightning strikes and microbial activity in soil. However, the main sources of nitrogen oxides contributing to air pollution are human activities such as transportation, industry, and agriculture. These sources release nitrogen oxides into the atmosphere, where they react with other pollutants to form harmful substances like ozone and particulate matter, leading to smog and respiratory issues.
Oxides of nitrogen and sulphur.
Mainly oxides of nitrogen, such as nitric oxide and nitrogen dioxide.
Burning fossil fuels, such as coal and oil, releases pollutants like sulfur dioxide and nitrogen oxides into the atmosphere. These pollutants can react with sunlight, water, and other chemicals in the atmosphere to form smog and acid rain.
The two gases primarily responsible for acidic rain are sulfur dioxide (SO2) and nitrogen oxides (NOx). When these gases react with water in the atmosphere, they form sulfuric acid and nitric acid, which contribute to the acidity of rain.
Phosphorus fixation in acid soils occurs primarily through the reaction of phosphorus with iron and aluminum oxides, forming insoluble compounds that make phosphorus unavailable to plants. The low pH levels in these soils promote the solubility of these oxides, increasing their reactivity with phosphorus. Organic matter can also influence phosphorus availability by enhancing microbial activity, which may help release some fixed phosphorus. Therefore, managing soil pH and organic content is crucial for improving phosphorus availability in acid soils.
Agate contains primarily silica, along with trace amounts of other minerals such as iron oxides, manganese, and other impurities. The patterns and colors in agate are a result of these mineral impurities.
No, car exhaust is primarily composed of carbon monoxide, nitrogen oxides, and hydrocarbons, with smaller amounts of carbon dioxide and other pollutants.
Examples: uranium oxides, sodium oxides, lead oxides, aluminium oxide, plutonium oxides etc.