硝化作用
多效唑
环境化学
化学
一氧化二氮
微生物种群生物学
农学
农药
非生物成分
环境科学
农业
氮气
细菌
生态学
生物
有机化学
遗传学
作者
Tao Guo,Fang Wang,Iman Tahmasbian,Yan Wang,Tangrong Zhou,Xiangyi Pan,Yiliang Zhang,Tianqi Li,Manyun Zhang
标识
DOI:10.1021/acs.jafc.3c06972
摘要
Agrochemical residues and nitrous oxide (N 2 O) emissions have caused considerable threats to agricultural soil ecology. Nanoscale zerovalent iron (nZVI) and nitrification inhibitors might be complementary to each other to diminish soil agrochemical residues and N 2 O emissions and enhance soil bacterial community diversities. Compared to the control, the nZVI application declined soil paclobutrazol residues by 5.9% but also decreased the bacterial community co-occurrence network node. Combined nZVI and Dicyandiamide applications significantly decreased soil N 2 O emission rates and paclobutrazol residues but promoted Shannon diversity of the bacterial community. The increased soil pH, ammonium nitrogen, and Actinobacteriota could promote soil paclobutrazol dissipation. The nZVI generated double-edged sword effects of positively decreasing paclobutrazol residues and N 2 O emissions but negatively influencing soil multifunctionalities. The nZVI and Dicyandiamide could be complementary to each other in diminishing soil agrochemical residues and N 2 O emission rates but promoting soil bacterial community diversities simultaneously.
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