风化作用
硅酸盐矿物
硅灰石
硅酸盐
钙长石
钠长石
浸出(土壤学)
土壤水分
橄榄石
环境化学
渗滤液
地质学
地球化学
矿物学
土壤科学
环境科学
化学
石英
有机化学
原材料
古生物学
作者
Emily E. E. M. te Pas,Mathilde Hagens,Rob N.J. Comans
标识
DOI:10.3389/fclim.2022.954064
摘要
Enhanced weathering is a negative emission technology that involves the spread of crushed silicate minerals and rocks on land and water. When applied to agricultural soils, the resulting increase in soil pH and release of nutrients may co-benefit plant productivity. Silicate minerals and rocks differ in their enhanced weathering potential , i.e., their potential for both carbon dioxide (CO 2 ) sequestration and soil quality improvements. However, studies comparing silicate minerals and rocks for this dual potential are lacking. Therefore, we compared the enhanced weathering potential of olivine (Mg 2 SiO 4 ), basalt, wollastonite (CaSiO 3 ), and two minerals that are novel in this context, anorthite (CaAl 2 Si 2 O 8 ) and albite (NaAlSi 3 O 8 ). A down-flow soil column experiment was designed allowing for measurements on soils and leachate, and calculations of organic and inorganic carbon budgets. Our results showed comparatively high CO 2 capture by enhanced wollastonite and olivine weathering. Furthermore, CO 2 capture per m 2 specific surface area indicated potential for enhanced anorthite and albite weathering. Calculated carbon budgets showed that most treatments produced net CO 2 emissions from soils, likely related to the short duration of this experiment. All silicates generally improved soil quality, with soil nickel contents remaining below contamination limits. However, nickel concentrations in leachates from olivine-amended soils exceeded the groundwater threshold value, stressing the importance of monitoring nickel leaching. We found a relatively high enhanced weathering potential for wollastonite, while the potential for olivine may be constrained by nickel leaching. The promising results for anorthite and albite indicate the need to further quantify their enhanced weathering potential .
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