Climate
Remineralization stabilizes the climate through the sequestration of carbon in agricultural and forest soils. While unhealthy forests give off CO2, healthy forests are a carbon sink- increased vitality and growth leads to an increase in carbon sequestration.
Publication Title Publication YearType of PublicationPublication LanguageResearch Area(s) |
---|
Potential and costs of carbon dioxide removal by enhanced weathering of rocks 2018LetterEnglishAgrogeology; Carbon Sequestration; Climate Change |
2013Journal ArticleEnglishAgrogeology; Carbon Sequestration; Climate Change |
Biological Enhancement of Soil Carbonate Precipitation: Passive Removal of Atmospheric CO2 2008Journal ArticleEnglishAgriculture; Carbon Sequestration; Climate Change |
Farming with Crops and Rocks to Address Global Climate, Food and Soil Security 2018Journal ArticleEnglishAgriculture; Carbon Sequestration; Climate Change |
Carbon Dioxide Mineralization Feasibility in the United States 2019ReportEnglishCarbon Sequestration; Climate Change |
Fuzzy optimization model for enhanced weathering networks using industrial waste 2021Journal ArticleEnglishCarbon Sequestration; Climate Change |
Farming with crops and rocks to address global climate, food and soil security 2018Journal ArticleEnglishAgriculture; Agrogeology; Carbon Sequestration; Climate Change |
2020Journal ArticleEnglishAgriculture; Agrogeology; Carbon Sequestration; Climate Change |
2002Journal ArticleEnglishClimate Change |
Rock’s power to mop up carbon revisited 2014News ArticleEnglishCarbon Sequestration; Climate Change |