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Performance of sanitary sewer collection system odour control devices operating in diverse conditions

机译:在各种条件下运行的污水收集系统气味控制装置的性能

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Controlling odours from sanitary sewer systems is challenging as a result of the expansive nature of these systems. Addition of oxidizing chemicals is often practiced as a mitigation strategy. One alternative is to remove odorous compounds in the gases vented from manholes using adsorptive media. In this study, odour control devices located at manholes were observed to determine the ability of these systems to reduce hydrogen sulphide from vented gases. The odour control devices incorporated pressure regulation to control gas flow out of manhole covers and adsorptive media to remove hydrogen sulphide in the vented gases prior to release. Pressure regulation was accomplished using a variable volume bladder and two pressure relief valves that permitted gas flow when pressures exceeded 1.3 to 2.5 cm water column. The reduction in gas flow vented from manholes was intended to extend the service life of the adsorptive media, as compared with odour control devices that do not incorporate pressure modulation. Devices were deployed at four locations and three adsorptive media were tested. Although measured collection system hydrogen sulphide concentrations varied from zero to over 1,000 ppm, the removal rates observed using odour control devices were typically above 90%. The lower removal rates observed at one of the sites (50.5±36.1%) appeared related to high gas flow rates being emitted at this location. Activated carbon was used in most of the tests, although use of iron media resulted in the highest removal observed: 97.8±3.6%. The expected service life of the adsorptive media contained within the odour control devices is a function of site-specific hydrogen sulphide concentrations and gas flow rates. The units used in this study were in service for more than 8 to 12 months prior to requiring media replacement.
机译:由于这些系统的膨胀性,控制下水道系统的异味具有挑战性。氧化化学品的添加通常作为缓解策略。一种替代方法是使用吸附介质去除从人孔排出的气体中的有味化合物。在这项研究中,观察到位于人孔的气味控制装置,以确定这些系统减少排放气体中硫化氢的能力。气味控制装置具有压力调节功能,可控制气体从人孔盖和吸附介质中流出,从而在释放之前除去排出气体中的硫化氢。使用可变容量的气囊和两个泄压阀完成压力调节,当压力超过水柱1.3至2.5 cm时,允许气体流动。与不带有压力调节装置的气味控制装置相比,减少从人孔排出的气流的目的是延长吸附介质的使用寿命。将设备部署在四个位置,并测试了三种吸附介质。尽管测得的收集系统中硫化氢浓度从零到超过1,000 ppm,但使用气味控制装置观察到的去除率通常高于90%。在一个位置观察到的较低的去除率(50.5±36.1%)似乎与该位置的高气体排放速率有关。尽管使用铁介质导致去除率最高,但大多数测试都使用了活性炭:97.8±3.6%。气味控制装置中包含的吸附介质的预期使用寿命是特定于现场的硫化氢浓度和气体流速的函数。在需要更换介质之前,本研究中使用的设备已使用了8至12个月以上。

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