生物炭
氧化亚氮还原酶
沼气
化学
反硝化
稻草
亚硝酸盐还原酶
硝化作用
氨单加氧酶
硝酸还原酶
硝酸盐
修正案
铵
氮气循环
农学
环境化学
氮气
生物
无机化学
生态学
热解
有机化学
政治学
法学
作者
Nanyi Wang,Mukesh Kumar Awasthi,Junting Pan,Shilin Jiang,Fachun Wan,Lin Xu,Binghua Yan,Jiachao Zhang,Lihua Zhang,Hongli Huang,Hui Li
标识
DOI:10.1016/j.biortech.2022.127359
摘要
This study was carried out to determine the response characteristics of N2O emission, enzyme activities, and functional gene abundances involved in nitrification/denitirification process with biochar and biogas residue amendments during rice straw composting. The results revealed that N2O release mainly occurred during the second fermentation phase. Biogas residue amendment promoted N2O emission, while biochar addition decreased its emission by 33.6%. The nirK gene was abundant through composting process. Biogas residues increased the abundance of denitrification genes, resulting in further release of N2O. Biochar enhanced nosZ gene abundance and accelerated the reduction of N2O. Nitrate reductase (NR), nitrite reductase (NiR), N2O reductase (N2OR), and ammonia monooxygenase (AMO) activities were greatly stimulated by biochar or biogas residue rather than their combined addition. Pearson regression analysis indicated that N2O emission negatively correlated with ammonium and positively correlated with nosZ, nirK, 18S rDNA, total nitrogen, and nitrate (P < 0.05).
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