黄铁矿
异养
反硝化
化学
自养
硫杆菌
废水
环境化学
人工湿地
环境工程
制浆造纸工业
环境科学
氮气
矿物学
细菌
地质学
硫黄
古生物学
有机化学
工程类
作者
Yifan Chu,Wei Liu,Qiyang Tan,Lingli Yang,Jinmei Chen,Lin Ma,Yi Zhang,Zhenbin Wu,Feng He
标识
DOI:10.1016/j.biortech.2022.126710
摘要
Deep nitrogen removal from low-carbon wastewater is a pressing water treatment challenge as of yet. Eight sets of vertical-flow constructed wetland (VFCW) intensified by pyrite were designed and applied to treat with low C/N ratio wastewater in this research. The results showed that the addition of pyrite (100% added) significantly promoted TN removal with an efficiency higher than 27.05% under low C/N ratio conditions, indicating that mixotrophic denitrification was achieved in VFCW. Microbial analysis showed that the community structure and diversity of microorganisms were changed significantly, and the growth of autotrophic (Thiobacillus) and heterotrophic bacteria (Thauera) concomitantly enhanced. It is recommended that the addition amount of pyrite is 75% of the wetland volume, meantime, mixing evenly with 25% high porosity substrate (such as activated carbon, volcanic stone, etc.), which could enhance the effective adhesion of microorganisms and their contact area with pyrite, ultimately improve the denitrification capacity of the VFCW.
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