城市河流低水位运行生态修复机制与实践效果OA北大核心CSTPCDEI
Ecological restoration mechanism and practical effects of low water level operation in urban rivers
为厘清城市河流低水位运行的水生态修复机制,开展了垂向监测水和底泥理化指标、定量监测微生物功能基因、测定微生物活性等室内模拟试验,分析了泥-水界面环境因子及底泥溶解氧的变化特征,研究了底泥主要污染物和功能微生物的变化特征,揭示了低水位运行下污染底泥上层硝化和下层反硝化的协同耦合过程.结果表明:低水位运行可改变底泥的"源-汇"属性,高水位时的"源"转变成低水位的"汇",继而实现水质的提升;伴随着污染底泥的修复,可逐步形成"底栖动物沉水植物-挺水植物-昆虫-鸟类"的多营养级完整水生态系统;污染底泥治理是生态修复的关键,城市河流在低水位运行模式下可实现底泥自修复和生态系统构建.
To clarify the water ecological restoration mechanism of low water level operation in urban rivers,indoor simulation experiments were conducted,including vertical monitoring of water,physicochemical indicators of sediment,quantitative monitoring of microbial functional genes,and measurement of microbial activity.The change characteristics of environmental factors at the mud-water interface and dissolved oxygen in sediment were analyzed,the change characteristics in the main pollutants and functional microorganisms in sediment were studied,and the synergistic coupling process of upper nitrification and lower denitrification in polluted sediment under low water level operation were revealed.The results show that low water level operation can change the"source sink"property of sediment,and the"source"at high water level can be transformed into a"sink"at low water level,thereby achieving an improvement in water quality.With the restoration of polluted sediment,a multi nutrient level complete aquatic ecosystem consisting of benthic animals,submerged plants,emergent plants,insects,and birds can gradually be formed.The treatment of polluted sediment is the key to ecological restoration,and urban rivers can achieve self-restoration of sediment and ecosystem construction under low water level operation mode.
陈文龙;吴琼;李一平
珠江水利委员会珠江水利科学研究院,广东 广州 510611||水利部珠江河口治理与保护重点实验室,广东广州 510611||广东省河湖生命健康工程技术研究中心,广东 广州 510611河海大学环境学院,江苏 南京 210098
环境科学
城市河流低水位运行底泥污染生态修复
urban riverslow water level operationsediment pollutionecological restoration
《水资源保护》 2024 (002)
16-22 / 7
水利部重大科技项目(SKS-2022064);珠江水利科学研究院科技创新自立项目([2022]YF024,[2022]YF005)
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