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Evaluation of pollutants removal efficiency to achieve successful urban river restoration

机译:评估污染物去除效率以实现成功的城市河流修复

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Greater efforts to provide alternative scenarios are key to successful urban stream restoration planning. In this study, we discuss two different aspects of water quality management schemes, biodegradation and human health, which are incorporated in the restoration project of original, pristine condition of urban stream at the Gwangju (GJ) Stream, Korea. For this study, monthly monitoring of biochemical oxygen demand (BOD5) and fecal indicator bacteria (FIB) data were obtained from 2003 to 2008 and for 2008, respectively, and these were evaluated to explore pollutant magnitude and variation with respect to space and time window. Ideal scenarios to reduce target pollutants were determined based on their seasonal characteristics and correlations between the concentrations at a water intake and discharge point, where we suggested an increase of environmental flow and wetland as pollutants reduction drawing for BOD5 and FIB, respectively. The scenarios were separately examined by the Qual2E model and hypothetically (but planned) constructed wetland, respectively. The results revealed that while controlling of the water quality at the intake point guaranteed the lower pollution level of BOD5 in the GJ Stream, a wetland constructed at the discharge point may be a promising strategy to mitigate mass loads of FIB. Overall, this study suggests that a combination of the two can be plausible scenarios not only to support sustainable urban water resources management, but to enhance a quality of urban stream restoration assignment.
机译:努力提供替代方案是成功进行城市河流恢复规划的关键。在这项研究中,我们讨论了水质管理计划的两个不同方面,即生物降解和人体健康,这两个方面已纳入韩国光州(GJ)溪流原始原始状态的修复项目中。在本研究中,分别从2003年至2008年和2008年分别获得了每月生化需氧量(BOD5)和粪便指示菌(FIB)数据的监测,并对这些数据进行了评估,以探索污染物的量级和随时间和空间的变化。根据目标污染物的季节特征以及进水和排水点之间的浓度相关性,确定了减少目标污染物的理想方案,我们分别建议将BOD5和FIB的污染物减少量作为环境流量和湿地的增加。分别通过Qual2E模型和假设(但已计划)的人工湿地对情景进行了检验。结果表明,在控制进水点的水质可确保GJ流中BOD5的污染水平较低的同时,在出水点建造湿地可能是减轻FIB质量负荷的一种有前途的策略。总体而言,这项研究表明,将两者结合起来不仅可以支持可持续的城市水资源管理,而且可以提高城市河流恢复分配的质量。

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