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首页> 外文期刊>Environmental Science and Pollution Research >Mitigation of diffuse CH4 and H2S emissions from the liquid phase of UASB-based sewage treatment plants: challenges, techniques, and perspectives
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Mitigation of diffuse CH4 and H2S emissions from the liquid phase of UASB-based sewage treatment plants: challenges, techniques, and perspectives

机译:乌斯巴基污水处理厂液相扩散CH4和H2S排放的减缓:挑战,技术和观点

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摘要

Upflow anaerobic sludge blanket (UASB) reactors are considered to be a sustainable and well-established technology for sewage treatment in warm climate countries. However, gases dissolved in the effluent of these reactors, CH(4)and H2S in some instances, are a major drawback. These dissolved gases can be emitted into the atmosphere downstream of the anaerobic reactors, resulting in odour nuisance and, in the case of H2S, corrosion, while in the case of CH4, increasing greenhouse gas emissions with a significant loss of potentially recoverable energy. In this sense, this study aims to provide a critical review of the recent efforts to control CH(4)and H2S dissolved in UASB reactor effluents, with a focus on the different available techniques. Different desorption techniques have been tested for the removal/recovery of dissolved CH(4)and H2S: diffused aeration, simplified desorption chamber, packed desorption chamber, closed downflow hanging sponge reactor, membrane contactor, and vacuum desorption chamber. Other recent publications addressing the oxidation of these compounds in biological posttreatments with simultaneous nitrification/denitrification of ammonia were also discussed. Additionally, the rationale of CH(4)recovery was determined by energy balance and carbon footprint approaches, and the H2S removal was examined by modelling its emission and atmospheric dispersion.
机译:上流厌氧污泥毯(UASB)反应堆被认为是温暖气候国家污水处理的可持续和熟练的技术。然而,在某些情况下,溶解在这些反应器,CH(4)和H2S的流出物中的气体是主要的缺点。这些溶解气体可以发射到厌氧反应器下游的大气中,导致气味滋扰,并且在H 2 S的情况下,在CH4的情况下,在CH4的情况下,增加温室气体排放具有显着的潜在可收回能量的损失。从这个意义上讲,本研究旨在提供对近期控制溶解在UASB反应器流出物中的CH(4)和H2S的努力的关键综述,重点是不同的可用技术。已经测试了不同的解吸技术,用于去除/回收溶解的CH(4)和H 2 S:扩散通气,简化的解吸室,填充的解吸室,闭合下流悬挂海绵反应器,膜接触器和真空去吸室。还讨论了解决具有同时硝化/硝化氨的生物后处理中这些化合物氧化的最近出版物。另外,通过能量平衡和碳足迹方法确定CH(4)回收的基本原理,通过对排放和大气分散体进行建模来检查H2S去除。

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