硝化作用
废水
磷
反硝化
盐度
营养物
异养
好氧反硝化
污水处理
环境化学
环境科学
制浆造纸工业
化学
环境工程
氮气
反硝化细菌
生态学
生物
细菌
遗传学
有机化学
工程类
作者
Linfang Zhang,Xiaodan Huang,Wenting Chen,Guokai Fu,Zhang Zhi
标识
DOI:10.1016/j.biortech.2023.129901
摘要
A microalgae-assisted heterotrophic nitrification-aerobic denitrification (HNAD) system for efficient nutrient removal from high-salinity wastewater was constructed for the first time as a cost-effective process in the present study. Excellent nutrient removal (∼100.0 %) was achieved through the symbiotic system. The biological removal process, biologically induced phosphate precipitation (BIPP), microalgae uptake, and ammonia stripping worked together for nutrient removal. Furthermore, the biological removal process achieved by biofilm contributed to approximately 55.3-71.8 % of nitrogen removal. BIPP undertook approximately 45.6-51.8 % of phosphorus removal. Batch activity tests confirmed that HNAD fulfilled an extremely critical role in nitrogen removal. Microalgal metabolism drove BIPP to achieve efficient phosphorus removal. Moreover, as the main HNAD bacteria, OLB13 and Thauera were enriched. The preliminary energy flow analysis demonstrated that the symbiotic system could achieve energy neutrality, theoretically. The findings provide novel insights into strategies of low-carbon and efficient nutrient removal from high-salinity wastewater.
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