Linked from
The 39 pages that link to Acid rain, each with the reason it gives.
Acid–base reactionRelated: Acid–base reactions in air and water determine how these pollutants alter acidity.
Air pollutionBroader topic: Sulfur and nitrogen emissions can form acids that damage forests, waters, and buildings.
Nitrogen cycleRelated: Nitrogen oxides formed during combustion can return to land and water as acidic deposition.
WeatheringRelated: Acidic water can accelerate chemical alteration of minerals and stone.
NitrogenRelated: Nitrogen oxides from combustion contribute to acid deposition.
Volcanic gasRelated: Volcanic sulfur dioxide can oxidize and dissolve in water, producing acidic deposition.
SulfurRelated: Sulfur dioxide emissions can oxidize in air and contribute to acidifying rain.
Hydrochloric acidCompared with: It is an environmental acidification process, unlike localized hydrochloric acid use or release.
Sulfur dioxideRelated: SO₂ oxidation produces sulfuric acid that can return to Earth in precipitation.
CoalRelated: Sulfur dioxide from coal burning can contribute to acid deposition.
SulfateRelated: Sulfur emissions can oxidize into sulfuric acid and sulfate in precipitation.
Nitric acidRelated: Nitrogen oxides from nitric acid production and combustion can contribute to acid deposition.
Fossil fuelRelated: Sulfur and nitrogen emissions from fuel burning help create these acids.
AcidRelated: It shows how acid-forming emissions alter soils, waters, and built materials.
Atmospheric chemistryRelated: Atmospheric oxidation converts sulfur dioxide and nitrogen oxides into acids that reach Earth's surface.
MarbleRelated: Its acids dissolve marble surfaces and erode carved details.
Nitrogen oxidesRelated: Atmospheric oxidation of nitrogen oxides produces nitric acid that acidifies rain.
Nitrogen dioxideRelated: NO₂ oxidation produces nitric acid, one contributor to acidic deposition.
AcidityBroader topic: It connects atmospheric emissions with increased acidity in water and soil.
Industrial pollutionBroader topic: Industrial sulfur and nitrogen emissions can form acids that damage forests, soils, and waters.
SmeltingRelated: Sulfur dioxide from smelters can form acids that damage ecosystems and structures.
Sulfur cycleRelated: Atmospheric sulfur oxidation can return as acidic deposition, affecting soils and waters.
Flue-gas desulfurizationRelated: Removing sulfur dioxide limits the atmospheric precursor of sulfuric acid deposition.
NorilskRelated: Sulfur emissions from Norilsk’s metallurgical plants contribute to acidifying pollution.
Photochemical smogCompared with: It shares some emission sources with smog but forms through different atmospheric processes.
PollutionBroader topic: Airborne emissions can return to land and water as acidic deposition.
Selective catalytic reductionRelated: Reducing NOx emissions helps limit nitrogen-derived acid deposition.
TroposphereRelated: Reactions and transport in the troposphere produce acids that return to the surface in precipitation.
Air pollution controlRelated: Reducing these precursor emissions helped limit acid deposition.
Copper smeltingRelated: Uncaptured sulfur dioxide from smelters can form acids in the atmosphere.
Roasting (metallurgy)Related: Sulfur dioxide released by roasting can form acids in the atmosphere.
Eastern deciduous forestsRelated: Acid deposition damaged soils and trees in parts of the eastern forest region.
Sulfur trioxideRelated: Atmospheric SO₃ reacts with water and contributes to sulfuric acid formation in acidic aerosols and precipitation.
SmogRelated: Some emissions that produce sulfurous smog also form acids deposited from the atmosphere.
Sulfurous acidRelated: Dissolved sulfur dioxide forms acidic species that contribute to sulfur-driven atmospheric acidity.
Acid anhydrideRelated: Acidic oxides released to air can form acids in atmospheric water.
By-productRelated: These emissions can be by-products of burning fuels and industrial activity.
Picea rubensRelated: Acid deposition and associated calcium loss damaged red spruce at high elevations during the twentieth century.
Alpine lakeRelated: Low-buffering alpine waters can be especially vulnerable to acid deposition.