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复合湿地中功能填料的增强作用可同步高效去除实际农村污水中的碳、氮和磷。

Synchronous and efficient removal of carbon, nitrogen, and phosphorus from actual rural sewage by composite wetlands enhanced with functional fillers.

机构信息

College of Water Conservancy and Architectural Engineering, Shihezi University, Shihezi, Xinjiang 832000, PR China; Key Laboratory of Cold and Arid Regions Eco-Hydraulic Engineering of Xinjiang Production & Construction Corps, Shihezi, Xinjiang 832000, PR China.

College of Water Conservancy and Architectural Engineering, Shihezi University, Shihezi, Xinjiang 832000, PR China; Key Laboratory of Cold and Arid Regions Eco-Hydraulic Engineering of Xinjiang Production & Construction Corps, Shihezi, Xinjiang 832000, PR China.

出版信息

Bioresour Technol. 2024 Dec;414:131566. doi: 10.1016/j.biortech.2024.131566. Epub 2024 Oct 2.

Abstract

A composite wetland (CECW) was constructed by introducing P-adsorption filler (EPAF) and activated sludge into traditional wetlands for treating actual sewage. The results showed that EPAF improved P removal through physico-chemical adsorption, and it could be stably regenerated after adsorption saturation without potential risks. Meanwhile, zeolite promoted NH-N reduction in sewage by cation exchange. In addition, simultaneous biological removal of carbon, nitrogen, and phosphorus was achieved through nitrification, denitrification, anammox, and aerobic P-accumulation processes induced by Nitrobacter, Proteus Hauser, Candidatus Paracaedibacter, and Brevundimonas. Under the coupling of filler interception/adsorption, microbial assimilation/transformation, flocculation, and plant uptake, CECW obtained the removal rates of 93.22 %, 85.75 %, 91.80 %, 95.38 %, 97.07 %, and 78.05 % for turbidity, TN, NH-N, TP, PO-P, and TCOD, which met the Class 1A standard (GB18918-2002). Therefore, the experiment systematically investigated the effects and mechanism of CECW in treating actual sewage, which could provide reference for rural sewage treatment and sludge utilization.

摘要

复合湿地(CECW)通过向传统湿地中引入 P 吸附填料(EPAF)和活性污泥来处理实际污水。结果表明,EPAF 通过物理化学吸附提高了磷的去除率,并且在吸附饱和后可以稳定地再生而没有潜在风险。同时,沸石通过阳离子交换促进污水中 NH-N 的还原。此外,通过硝化、反硝化、氨氧化和有氧 P 积累过程,实现了污水中碳、氮和磷的同步生物去除,这些过程由 Nitrobacter、Proteus Hauser、Candidatus Paracaedibacter 和 Brevundimonas 诱导。在填料截留/吸附、微生物同化/转化、絮凝和植物吸收的耦合作用下,CECW 对浊度、TN、NH-N、TP、PO-P 和 TCOD 的去除率分别为 93.22%、85.75%、91.80%、95.38%、97.07%和 78.05%,达到了一级 A 标准(GB18918-2002)。因此,该实验系统地研究了 CECW 处理实际污水的效果和机制,可为农村污水处理和污泥利用提供参考。

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