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Recent findings on sinks for sulfide in gravity sewer networks

机译:重力下水道网络中硫化物汇的最新发现

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Sulfide buildup in sewer networks is associated with several problems, including health impacts, corrosion of sewer structures and odor nuisance. In recent years, significant advances in the knowledge of the major processes governing sulfide buildup in sewer networks have been made. This paper summarizes this newly obtained knowledge and emphasizes important implications of the findings. Model simulations of the in-sewer processes important for the sulfur cycle showed that sulfide oxidation in the wetted biofilm is typically the most important sink for dissolved sulfide in gravity sewers. However, sulfide emission and thereby potential hydrogen sulfide buildup in the sewer atmosphere is of particular importance in sewers constructed with large diameter pipes, in sewers constructed with steep slopes and in sewers conveying low pH wastewater. Precipitation of metal sulfides is only important when the sulfide concentration in the wastewater is low; i.e. less than 1 g S m(-3).
机译:下水道网络中硫化物的积聚与若干问题有关,包括对健康的影响,下水道结构的腐蚀和臭气。近年来,在控制下水道网络中硫化物堆积的主要过程的知识方面取得了重大进展。本文总结了这一新获得的知识,并强调了这些发现的重要含义。对硫循环至关重要的下水道过程的模型仿真表明,湿生物膜中的硫化物氧化通常是重力下水道中溶解的硫化物最重要的汇。但是,在用大口径管道建造的下水道,在陡坡上建造的下水道和输送低pH废水的下水道中,下水道大气中的硫化物排放以及由此潜在的硫化氢积累特别重要。仅当废水中的硫化物浓度低时,金属硫化物的沉淀才重要。即小于1 g S m(-3)。

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