土壤酸化
环境科学
浸出(土壤学)
土壤pH值
肥料
硝酸盐
农学
土壤肥力
土壤科学
土壤水分
化学
生物
有机化学
作者
Mufan Zeng,W. de Vries,L.T.C. Bonten,Qichao Zhu,Tianxiang Hao,Xuejun Liu,Minggang Xu,Xiaojun Shi,Fusuo Zhang,Jianbo Shen
标识
DOI:10.1021/acs.est.6b05491
摘要
Agricultural soil acidification in China is known to be caused by the over-application of nitrogen (N) fertilizers, but the long-term impacts of different fertilization practices on intensive cropland soil acidification are largely unknown. Here, we further developed the soil acidification model VSD+ for intensive agricultural systems and validated it against observed data from three long-term fertilization experiments in China. The model simulated well the changes in soil pH and base saturation over the last 20 years. The validated model was adopted to quantify the contribution of N and base cation (BC) fluxes to soil acidification. The net NO 3 – leaching and NO 4 + input accounted for 80% of the proton production under N application, whereas one-third of acid was produced by BC uptake when N was not applied. The simulated long-term (1990–2050) effects of different fertilizations on soil acidification showed that balanced N application combined with manure application avoids reduction of both soil pH and base saturation, while application of calcium nitrate and liming increases these two soil properties. Reducing NH 4 + input and NO 3 – leaching by optimizing N management and increasing BC inputs by manure application thus already seem to be effective approaches to mitigating soil acidification in intensive cropland systems.
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