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好氧-富氧曝气生物处理在黑臭河涌原位修复中的应用
引用本文:肖羽堂, 王艳杰, 吴玉丽, 曾楚雯, 郑伟明. 好氧-富氧曝气生物处理在黑臭河涌原位修复中的应用[J]. 环境工程学报, 2017, 11(5): 2780-2784. doi: 10.12030/j.cjee.201512228
作者姓名:肖羽堂  王艳杰  吴玉丽  曾楚雯  郑伟明
作者单位:1.华南师范大学化学与环境学院, 广州 511400
基金项目:广东省高校引进人才专项资金(粤财教[2012]328号C1067501)
摘    要:近年来,反复强调治理黑臭河涌的必要性,为了修复广东南海某黑臭河涌,采用优势菌接种和多级好氧-富氧生物处理原位修复集成工艺系统修复黑臭水体。实验结果表明,通过向底泥和上覆水体里投加培养、驯化的优势菌种,辅以光合细菌、硝化细菌,上覆水体的水质显著好转,水体透明度由初始的5 cm 左右,上升至35 cm 左右,水体黑臭完全消除。在土著微生物的作用下,水体中的有机物得到很好的去除,上覆水体的COD、氨氮、BOD5和总磷的浓度显著下降,其去除率分别达到68.1%~78.7%、79.8%~80.1%、84.8%~85.2%和76.4%~83.6%,河涌的自净能力得到大大提高。

关 键 词:好氧-富氧曝气   生物处理   原位修复   优势菌种   硝化细菌
收稿时间:2016-02-18

Application of black-odor river of aerobic-oxygen-enriched aeration biological treatment in-situ remediation
XIAO Yutang, WANG Yanjie, WU Yuli, ZENG Chuwen, ZHENG Weiming. Application of black-odor river of aerobic-oxygen-enriched aeration biological treatment in-situ remediation[J]. Chinese Journal of Environmental Engineering, 2017, 11(5): 2780-2784. doi: 10.12030/j.cjee.201512228
Authors:XIAO Yutang  WANG Yanjie  WU Yuli  ZENG Chuwen  ZHENG Weiming
Affiliation:1.School of Chemistry and Environment, South China Normal University, Guangzhou 511400, China
Abstract:In recent years,the necessity to improve the conditions of black-odor rivers has been emphasized repeatedly. In situ remediation technology was used in the Nanhai River of Guangdong province to control the black-odor pollution by inoculating it with dominant bacteria and multistage biological treatment of aerobic-oxygen-enriched aeration. The results showed that with the effects of photosynthetic bacteria and nitrobacteria,the dominant bacteria increased the quality of the overlying water,the water transparency went from 5 cm to 35 cm,and the black-odor pollution basically was eliminated. The removal rates of COD,NH3-N,BOD5,and TP were from 68.1% to 78.7%,79.8% to 80.1%,84.8% to 85.2%,and 76.4% to 83.6%,respectively,and were attributed to the functions of indigenous microorganisms,which helped the degradation of the organic pollutants. As a result,the self-purification capacity of the river improved.
Keywords:aerobic-oxygen-enriched aeration  biological treatment  in-situ remediation  dominant bacteria  nitrobacteria
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