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Nitrogen removal efficiency of surface flow constructed wetland for treating slightly polluted river water

机译:表面流动构建湿地处理略污染河水的氮去除效率

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摘要

Restoration and water quality improvement of malodorous as well as slightly polluted rivers have been the global focus for environmental protection research and the development and construction of sponge cities. To date, constructed wetlands have been proven to be one of efficient methods to improve water quality. Nitrogen removal efficiency is a crucial indicator for the performance evaluation in slightly polluted river water treatment. Therefore, current study aimed to investigate the N removal efficiency of 3-stage surface flow constructed wetlands for water treatment. Results show that after a prolonged operation period, constructed wetlands were able to remove NH4+-N, NO3--N, and TN by 38.4%, 22.3%, and 29.1%, respectively. Further investigations were carried out to investigate the removal efficiency of various N species in the 3-stage wetlands. Findings reveal that NH4+-N was mainly treated in wetland #1 (W1) and wetland #2 (W2), while NO3--N and TN were in wetland #2 (W2) and wetland #3 (W3). Results also reveal that the influencing factors such as hydraulic retention time (HRT), water temperature (WT), and additional carbon source have significant effect on the removal performance of constructed wetlands.
机译:恶臭的恢复和水质改善以及略微污染的河流是全球对环境保护研究和海绵城市的发展和建设的全球重点。迄今为止,已被证明构建的湿地是提高水质的有效方法之一。氮去除效率是略污染河水处理中的性能评价的关键指标。因此,目前的研究旨在研究3级表面流动构造湿地进行水处理的N去除效率。结果表明,经过长时间的运行期后,构造的湿地能够分别去除NH4 + -N,NO3 - N和TN,分别为38.4%,22.3%和29.1%。进行了进一步的研究,以研究3阶段湿地中各种N种的去除效率。结果表明,NH4 + -N主要在湿地#1(W1)和湿地#2(W2)中处理,而NO3 - N和TN在湿地#2(W2)和湿地#3(W3)中。结果还表明,影响液压保留时间(HRT),水温(WT)和额外碳源等影响因素对构造湿地的去除性能具有显着影响。

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