生物炭
土壤水分
阳离子交换容量
斜线和字符
温室气体
环境科学
环境化学
硝化作用
氮气
修正案
土壤pH值
氮气循环
自行车
化学
农学
热解
土壤科学
生态学
历史
生物
考古
有机化学
法学
政治学
作者
Huijuan Xu,Xiaohui Wang,Hu Li,Huaiying Yao,Jian‐Qiang Su,Yong‐Guan Zhu
摘要
Biochar has been suggested to improve acidic soils and to mitigate greenhouse gas emissions. However, little has been done on the role of biochar in ameliorating acidified soils induced by overuse of nitrogen fertilizers. In this study, we designed a pot trial with an acidic soil (pH 4.48) in a greenhouse to study the interconnections between microbial community, soil chemical property changes, and N2O emissions after biochar application. The results showed that biochar increased plant growth, soil pH, total carbon, total nitrogen, C/N ratio, and soil cation exchange capacity. The results of high-throughput sequencing showed that biochar application increased α-diversity significantly and changed the relative abundances of some microbes that are related with carbon and nitrogen cycling at the family level. Biochar amendment stimulated both nitrification and denitrification processes, while reducing N2O emissions overall. Results of redundancy analysis indicated biochar could shift the soil microbial community by changing soil chemical properties, which modulate N-cycling processes and soil N2O emissions. The significantly increased nosZ transcription suggests that biochar decreased soil N2O emissions by enhancing its further reduction to N2.
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