MUWS(微生物学在城市水系统)-跨学科的方法来研究微生物群落在城市水系统

Q2 Engineering
P. Deines, R. Sekar, H. Jensen, S. Tait, J. Boxall, A. Osborn, C. Biggs
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引用次数: 4

摘要

摘要城市供水系统微生物学(MUWS)是一个综合项目,旨在表征饮用水分配系统和污水管网中发现的微生物。这些大型基础设施系统对我们的生活质量有重大影响,尽管这些系统作为水循环的主要组成部分很重要,但对它们的微生物生态知之甚少。饮用水分配系统和下水道网络都很大,高度互联,动态,受时间和不同的输入和需求的影响,难以控制。由于城市化和长期的环境变化,它们的性能也面临着越来越大的负荷。因此,了解微生物生态学与城市水利基础设施系统短期或长期工程性能的潜在影响之间的联系非常重要。通过结合土木、生化工程师和分子微生物生态学家的优势和研究专长,我们的最终目标是将微生物群落的丰度、多样性和功能与物理和工程变量联系起来,从而探索对配水系统和污水管网的性能和管理的新见解。通过介绍我们使用的分子微生物技术背后的细节和原理,本文展示了一种综合方法的潜力,可以更好地了解城市水系统的功能,从而应对未来的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MUWS (Microbiology in Urban Water Systems) – an interdisciplinary approach to study microbial communities in urban water systems
Abstract. Microbiology in Urban Water Systems (MUWS) is an integrated project, which aims to characterize the microorganisms found in both potable water distribution systems and sewer networks. These large infrastructure systems have a major impact on our quality of life, and despite the importance of these systems as major components of the water cycle, little is known about their microbial ecology. Potable water distribution systems and sewer networks are both large, highly interconnected, dynamic, subject to time and varying inputs and demands, and difficult to control. Their performance also faces increasing loading due to increasing urbanization and longer-term environmental changes. Therefore, understanding the link between microbial ecology and any potential impacts on short or long-term engineering performance within urban water infrastructure systems is important. By combining the strengths and research expertise of civil-, biochemical engineers and molecular microbial ecologists, we ultimately aim to link microbial community abundance, diversity and function to physical and engineering variables so that novel insights into the performance and management of both water distribution systems and sewer networks can be explored. By presenting the details and principals behind the molecular microbiological techniques that we use, this paper demonstrates the potential of an integrated approach to better understand how urban water system function, and so meet future challenges.
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来源期刊
Drinking Water Engineering and Science
Drinking Water Engineering and Science Environmental Science-Water Science and Technology
CiteScore
3.90
自引率
0.00%
发文量
3
审稿时长
40 weeks
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