生物炭
曝气
温室气体
废水
环境科学
湿地
环境工程
营养物
地下水流
人工湿地
环境化学
污水处理
废物管理
生态学
化学
热解
生物
地下水
工程类
岩土工程
作者
Bohua Ji,Jinquan Chen,Jian Mei,Junjun Chang,Xuan Li,Jia Wei,Ying Qu
标识
DOI:10.1016/j.biortech.2020.122890
摘要
Biochar-based subsurface-flow constructed wetlands (CWs) with intermittent aeration (IA) or tidal flow (TF) oxygen supply strategies were established to treat domestic wastewater. The results showed that biochar achieved higher nutrient removal and lower greenhouse gas (GHG) emissions than ceramsite while supporting more diverse bacterial communities and higher abundances of functional taxa. Both IA and TF effectively enhanced nutrient removal, though the latter was more efficient and practical, and aeration conditions greatly influenced nutrient removal efficiency. GHG emissions were decreased by IA but were slightly increased by TF. Both oxygen supply methods significantly shaped the biofilm microbial communities and influenced biodiversity and richness, with observably higher proportions of potential nitrifiers and denitrifiers present in aerated CWs. Overall, biochar-based CWs operated with oxygen supply strategies provide superior treatment of decentralized wastewater.
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