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Effects of Drop Structures and Pump Station on Sewer Air Pressure and Hydrogen Sulfide: Field Investigation

机译:下落结构与泵站对下水压力和硫化氢的影响:现场调查

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Understanding hydrogen sulfide (H2S) emission into sewer air space and the rate of ventilation to the atmosphere is important in preventing/mitigating odor and corrosion problems in sewer systems. This study presents the results of a field monitoring program on the air pressure and H2S levels in a 3-km-long sanitary sewer system in Edmonton, Alberta, Canada, which has drop structures in the upstream section and a pump station in the downstream section. Nineteen manholes were monitored, including six drop structures. A positive correlation was found between the sewage flow rate and the observed diurnal patterns of air pressure and H2S concentration. Drop structures were found to have caused significant pressurization in the downstream sewer air space. More than 1 km of the trunk sewer upstream of the pump station was submerged due to the pump station operation. This reduces flow velocity, increases sewage retention time, and potentially enhances the generation of H2S. A unique pressure pattern was found at several locations upstream of the pump station, which was closely related to the sewage level variation in the wet-well as a result of pump operations. The results reveal the ventilation condition in the study sewer system and will be useful for developing sewer odor mitigation measures. (c) 2018 American Society of Civil Engineers.
机译:了解硫化氢(H2S)排放到下水道空间和对大气的通风速率对于预防下水道系统中的气味和腐蚀问题是重要的。本研究介绍了在加拿大艾伯塔省埃尔伯塔省埃德蒙顿的3公里长的卫生下水道系统中的空气压力和H2S水平的现场监测计划的结果,该系统在下游部分中具有下游部分和泵站的下落结构。监测九十户孔,包括六个落下结构。在污水流速与观察到的空气压力和H2S浓度之间存在正相关性。发现落下结构在下游下游空间中引起了显着的加压。由于泵站运行,泵站上游的2千米以上的行李箱下水道。这降低了流速,增加了污水保留时间,并且可能增强了H2S的产生。在泵站上游的几个位置发现了独特的压力模式,其与泵操作的湿良好井中的污水水平变化密切相关。结果揭示了研究下水道系统的通风条件,可用于开发下水道气味缓解措施。 (c)2018年美国土木工程师协会。

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