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Enumeration of sulphate-reducing bacteria for assessing potential for hydrogen sulphide production in urban drainage systems

机译:计算用于评估城市排水系统中硫化氢生产潜力的硫酸盐还原菌

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摘要

Urban drainage structures have increasing demands which can lead to increasing hydrogen sulphide related problems forming in places where they have not previously been prevalent. This puts pressure on the methods currently used to monitor and diagnose these problems and more sophisticated methods may be needed for identifying the origin of the problems. Molecular microbiological techniques, such as quantitative polymerase chain reaction, offer a potential alternative for identifying and quantifying bacteria likely to be causing the production of hydrogen sulphide, information that when combined with an appropriate sampling programme, can then be used to identify the potentially most effective remediation technique. The application of these methods in urban drainage systems is however, not always simple, but good results can be achieved. In this study hydrogen sulphide producing bacteria were quantified in three small combined sewer overflow storage tanks. Bacterial counts were compared between wastewater, biofilms and sediments. Similar numbers were found in the wastewater and biofilms, with the numbers in the sediments being lower. If remediation methods for hydrogen sulphide is deemed necessary in the tanks, methods that target both the wastewater and the biofilms should therefore be considered.
机译:城市排水结构的需求不断增加,这可能导致与硫化氢相关的问题在以前不普遍的地方形成。这给当前用于监视和诊断这些问题的方法带来了压力,并且可能需要更复杂的方法来识别问题的根源。分子微生物技术,例如定量聚合酶链反应,为鉴定和定量可能引起硫化氢产生的细菌提供了潜在的替代方法,这些信息与适当的采样程序结合后可用于鉴定潜在的最有效的方法。修复技术。但是,这些方法在城市排水系统中的应用并非总是很简单,但是可以达到良好的效果。在这项研究中,在三个小型组合下水道溢流储存罐中对产生硫化氢的细菌进行了定量。比较了废水,生物膜和沉积物之间的细菌计数。在废水和生物膜中发现的数量相似,但沉积物中的数量较低。如果认为在水箱中必须采用硫化氢的修复方法,则应考虑同时针对废水和生物膜的方法。

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