氮气
分解
化学
有机质
环境化学
孵化
溶解有机碳
藻类
天然有机质
水华
环境科学
生态学
蓝藻
水污染
藻席
航程(航空)
水生生态系统
水质
作者
H. H. Liu,Chen Wang,Zhongqing Huang,Jinhui Wang,Feixuan Cai,Chunmei Tian,Jimeng Feng,Jian Shen,Xinze Wang
标识
DOI:10.1021/acs.est.5c08386
摘要
led to the decoupling of nitrification-denitrification. After 7 days, humic-like AOM dominated by lignins (56.8%) prevailed, reducing oxygen consumption and enabling rapid recovery of nitrification and slow rebound of denitrification. These findings clarify the phased transformations of AOM and their microbial interactions, providing mechanistic insights into the short-term fluctuations of lake water quality and microbial processes during bloom decay.
科研通智能强力驱动
Strongly Powered by AbleSci AI