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Nitrite effectively inhibits sulfide and methane production in a laboratory scale sewer reactor

机译:亚硝酸盐有效抑制实验室规模的下水道反应器中硫化物和甲烷的产生

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The production and emission of hydrogen sulfide and methane by anaerobic microogan-isms in sewer systems is a well-documented problem. The effectiveness of nitrite in controlling sulfide and methane production was tested in a laboratory scale sewer reactor. Nitrite was continuously dosed in the reactor for 25 days at concentrations of 20-140 mgN/L. No sulfide and methane accumulation was observed in the reactor in the presence of nitrite. A significant reduction was observed in the sulfate reduction and methane production capabilities of the biofilm. Nitrite also stimulated biological sulfide oxidation within the biofilm. The nitrite uptake rate of the reactor increased over the nitrite dosing period and nitrous oxide production was observed within the biofilm. When nitrite addition was stopped, sulfate reduction and methane production gradually resumed, and reached pre-nitrite addition levels after 2.5 months. The slow recovery suggests that nitrite can be applied intermittently for sulfide and methane control, which represents a key advantage over similar chemicals such as nitrate and oxygen. The study demonstrates nitrite addition as a promising and effective strategy for the management of sulfide and methane in sewers. Further investigation and optimization are still required before application in the field.
机译:下水道系统中厌氧微生物生产和排放硫化氢和甲烷是一个有据可查的问题。在实验室规模的下水道反应器中测试了亚硝酸盐在控制硫化物和甲烷生产中的有效性。将亚硝酸盐以20-140 mgN / L的浓度连续注入反应器中25天。在亚硝酸盐存在下,在反应器中未观察到硫化物和甲烷的积累。观察到生物膜的硫酸盐还原和甲烷产生能力显着降低。亚硝酸盐还刺激生物膜内的生物硫化物氧化。在亚硝酸盐计量期间,反应器的亚硝酸盐吸收速率增加,并且在生物膜内观察到一氧化二氮的产生。停止添加亚硝酸盐后,硫酸盐还原和甲烷生成逐渐恢复,并在2.5个月后达到亚硝酸盐预添加水平。缓慢的恢复表明亚硝酸盐可以间歇地用于硫化物和甲烷的控制,这代表了优于类似化学品(例如硝酸盐和氧气)的主要优势。这项研究表明,添加亚硝酸盐是管理下水道中硫化物和甲烷的有前途和有效的策略。在现场应用之前,仍需要进一步的研究和优化。

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