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Hydrogen sulfide production in wet stormwater ponds: Study of hydraulics, water quality and microbial community structure

Hydrogen sulfide production in wet stormwater ponds: Study of hydraulics, water quality and microbial community structure
湿雨水池中硫化氢的产生:水力学、水质和微生物群落结构的研究
批准号:
469596-2014
负责人:
Delatolla, Robert
金额:
$4.6万
依托单位:
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2014
资助国家:
加拿大
项目状态:
已结题
起止时间:
2014-01-01 至 2015-12-31

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中文摘要
翻译
随着地球人口的不断增加,城市人口继续超过农村人口,世界各地的城市继续经历气候变化,雨水管理实践在全球范围内变得越来越重要。雨水管理池(SWPs),特别是湿池,通常被用作缓解高度城市化景观径流影响的最佳管理实践。尽管这些池塘在加拿大各地普遍使用,但目前对湿式swp中硫化氢(H2S)生产途径的了解还存在空白。SWPs的水力特性直接影响SWPs的水质和微生物群落。因此,本研究将调查一个SWP的水力学、水质和微生物群落结构,该SWP目前正经历H2S排放的时期,以便对加拿大SWP的H2S产量有一个基本的了解。特别是,该研究将SWP的水力学、微生物群落结构和水质与邻近没有H2S排放问题的参考池塘进行比较。这项研究将是第一个全面的实地研究,旨在调查与湿SWPs产生H2S相关的水力学、水质和生物过程。拟议的研究超越了对SWP的H2S监测,并提供了关于液压,水质和微生物群落对加拿大雨水池塘缺氧条件发展以及随后H2S产生和排放的伴随影响的新知识。最后,该研究将修改和评估水质和水力模型,这些修改后的模型将作为模拟管理策略的工具,以减少或消除加拿大池塘的H2S排放。
英文摘要
Stormwater management practices have become increasingly important at the global scale as the population of the Earth continues to increase, urban populations continue to surpass rural populations worldwide and the cities of the world continue to experience climate change. Stormwater management ponds (SWPs), and particularly wet ponds, are commonly used as a best management practice to mitigate the effects of runoff from highly urbanized landscapes. Although these ponds are commonly used throughout Canada, there is a current gap in knowledge with respect to hydrogen sulfide (H2S) production pathways in wet SWPs. The hydraulics of SWPs is known to directly affect the water quality and microbial communities of SWPs. As such, this research will investigate the hydraulics, water quality and microbial community structure of a SWP that currently experiences periods of H2S emission in order to develop a fundamental understanding of H2S production in SWPs in Canada. In particular, the study will compare the hydraulics, microbial community structure and water quality of the SWP to an adjacent reference pond that has not displayed H2S emission problems. This research will be the first comprehensive field study to investigate hydraulics, water quality and biological processes relating to H2S production of wet SWPs. The proposed research moves beyond H2S monitoring of a SWP and presents new knowledge with respect to the concomitant effects of hydraulics, water quality and microbial communities on the development of anoxic conditions in Canadian stormwater ponds and the subsequent production and emission of H2S. Finally the research will modify and evaluate water quality and hydraulic models, with these modified models serving as tools to simulate management strategies to minimize or eliminate H2S emissions in Canadian ponds.
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