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首页> 外文期刊>Science of the total environment >Toxicity variability of urban road stormwater during storage processes in Shenzhen, China: Identification of primary toxicity contributors and implications for reuse safety
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Toxicity variability of urban road stormwater during storage processes in Shenzhen, China: Identification of primary toxicity contributors and implications for reuse safety

机译:中国深圳储存过程中城市道路雨水的毒性变异:鉴定初级毒性贡献者的鉴定与重用安全的影响

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摘要

Urban road stormwater reuse is one of the most important ways to mitigate water resource shortage. Generally, stormwater is stored prior to reuse or further treatment. This study explored the stormwater toxicity variability during two types of storages, closed and open storages using Chinese hamster ovary cells (CHO), which are mammalian cells. The toxicity test by CHO cells can indirectly represent the risk related to human health. Both rainfall (without reaching ground surfaces) and urban road stormwater were collected to undertake laboratory-scaled storage experiments and basic water quality parameters (pH and dissolved oxygen), microorganisms (E.coli and total bacteria), total organic carbon and heavy metals (copper, Cu, zinc, Zn, nickel, Ni, chromium, Cr. cadmium, Cd and lead, Pb) were also investigated during storage processes. The outcomes showed that rainfall has a better water quality with lower toxicity than urban road stormwater (EC_(50) values of rainfall were generally twice higher than road stormwater). Additionally, it is found that storing road stormwater for a certain period would reduce the toxicity and hence improve their reuse safety (EC_(50) values in Day 1 were 10.30 mL and 8.46 mL for closed and open storage respectively while they were 14.3 mL and 13.0 mL in Day 7). Organic matters and Cu are important contributors of toxicity during both closed and open storages while bacteria is also essential in toxicity contribution in open storage. The research results implied that storing stormwater for a certain period has a benefit for reuse safety. This is related to cost-effectiveness in terms of treatment system design to avoid over engineering. Additionally, it is suggested that for reducing toxicity, the stormwater treatment designed before/after storage devices should focus on removal of organic matters and heavy metals (specially Cu) as well as restraining bacteria growth.
机译:城市道路雨水再利用是减轻水资源短缺的最重要方法之一。通常,在重用或进一步处理之前储存雨水。本研究探讨了使用哺乳动物细胞的中国仓鼠卵巢细胞(CHO)的两种类型的储存,封闭和开放的杂志中的雨水毒性变异性。 CHO细胞的毒性测试可以间接地代表与人类健康有关的风险。收集降雨(不达到地面)和城市道路雨水,以进行实验室缩放的储存实验和基本水质参数(pH和溶解氧),微生物(大肠杆菌和总细菌),总有机碳和重金属(在储存过程中还研究了铜,Cu,锌,Zn,镍,Ni,铬,Cr。镉,Cd和铅,Pb)。结果表明,降雨量具有更好的水质,比城市道路雨水(EC_(50)降雨量的降雨量通常比路雨水高两倍)。另外,发现储存道路雨水一定时期将降低毒性,因此改善其重用安全(EC_(50)分别为10.30ml,8.46ml,分别为14.3毫升第7天13.0毫升)。有机问题和Cu是闭合和开放式杂志中毒性的重要贡献者,而细菌也是开放储存中的毒性贡献必不可少的。研究结果暗示,储存雨水一定时期对重用安全有益。这与治疗系统设计方面的成本效益有关,以避免工程。此外,有人建议用于减少毒性,储存装置之前/之后设计的雨水处理应专注于去除有机物质和重金属(特别是Cu)以及抑制细菌生长。

著录项

  • 来源
    《Science of the total environment》 |2020年第25期|140964.1-140964.11|共11页
  • 作者单位

    College of Chemistry and Environmental Engineering Shenzhen University 518060 Shenzhen China;

    College of Chemistry and Environmental Engineering Shenzhen University 518060 Shenzhen China;

    College of Chemistry and Environmental Engineering Shenzhen University 518060 Shenzhen China;

    Guangdong Provincial Engineering Technology Research Centre for Urban Water Cycle and Water Environment Safety Tsinghua Shenzhen International Graduate School Tsinghua University 518055 Shenzhen China;

    Guangdong Provincial Engineering Technology Research Centre for Urban Water Cycle and Water Environment Safety Tsinghua Shenzhen International Graduate School Tsinghua University 518055 Shenzhen China;

    College of Chemistry and Environmental Engineering Shenzhen University 518060 Shenzhen China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Urban road stormwater; Stormwater reuse safety; Toxicity test; Stormwater storage; Water resource shortage;

    机译:城市道路雨水;雨水再利用安全;毒性测试;雨水储存;水资源短缺;

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