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用于可持续处理人工湿地芦苇凋落物废物的微生物群落鉴定

Identification of microbial consortia for sustainable disposal of constructed wetland reed litter wastes.

作者信息

Hua Wanting, Hu Wenqian, Chen Qi, Fan Chunzhen, Jiang Shunfeng, Zhao Min, Wang Zhiquan, Zheng Xiangyong, Wu Suqing, Zeng Qingyi, Zhong Chunjie

机构信息

College of Life and Environmental Science, Wenzhou University, Wenzhou, Zhejiang, 325035, People's Republic of China.

National and Local Joint Engineering Research Center of Ecological Treatment Technology for Urban Water Pollution, Wenzhou, Zhejiang, 325035, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2023 Apr;30(20):58019-58029. doi: 10.1007/s11356-023-26649-3. Epub 2023 Mar 28.

Abstract

Reed is a typical emerged plant in constructed wetlands (CWs). Its litters were used as raw materials for preparing Fe-C ceramic-filler (Fe-C-CF). The physical and chemical properties of Fe-C-CF were studied under different conditions, including the mass ration of Fe to carbon (Fe/C ratio), sintering temperature, and time, to determine the optimum preparing conditions. Meanwhile, the denitrification performance and CO emission flux of the surface flow constructed wetland (SFCW) systems were investigated when using Fe-C-CF as the matrix. The optimum preparing conditions for Fe-C-CF were Fe/C ratio of 1:1, sintering temperature and time of 500 °C and 20 min, respectively. The SFCW system with Fe-C-CF obtained a higher total nitrogen (TN), nitrate nitrogen (NO-N), and ammonia nitrogen (NH-N) removal efficiencies than the control SFCW system without Fe-C-CF. Compared with the heterotrophic denitrification process, the SFCW system with Fe-C-CF decreased CO emission by 67.9 g m per year. The results of microbial community analysis indicated that addition of Fe-C-CF increased the diversity and abundance of microbial communities in the SFCW systems. The dominant genus of the SFCW system with Fe-C-CF was Bacillus, while Uliginosibacterium was the dominant genus in the system without the filler.

摘要

芦苇是人工湿地中典型的挺水植物。其凋落物被用作制备铁 - 碳陶瓷填料(Fe - C - CF)的原料。在不同条件下研究了Fe - C - CF的物理和化学性质,包括铁与碳的质量比(Fe/C比)、烧结温度和时间,以确定最佳制备条件。同时,研究了以Fe - C - CF为基质时表面流人工湿地(SFCW)系统的反硝化性能和CO排放通量。Fe - C - CF的最佳制备条件为Fe/C比为1:1、烧结温度和时间分别为500℃和20分钟。与不含Fe - C - CF的对照SFCW系统相比,含有Fe - C - CF的SFCW系统对总氮(TN)、硝态氮(NO - N)和氨氮(NH - N)的去除效率更高。与异养反硝化过程相比,含有Fe - C - CF的SFCW系统每年减少CO排放量67.9 g·m 。微生物群落分析结果表明,添加Fe - C - CF增加了SFCW系统中微生物群落的多样性和丰度。含有Fe - C - CF的SFCW系统的优势菌属为芽孢杆菌属,而不含填料的系统中优势菌属为寡养单胞菌属。

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