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Sulfide removal by moderate oxygenation of anaerobic sludge environments

机译:通过厌氧污泥环境的适度氧化去除硫化物

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Introduction of a limited amount of oxygen to anaerobic bioreactors is proposed as a simple technique to lower the level of sulfide in the biogas. This paper presents the results of a bioreactor study and of batch experiments that were performed to obtain better insight into the fate of sulfur compounds and oxygen during micro-aerobic sulfide oxidation. Introduction of a low airflow (0.7-0.9 m(3) m-3 d(-1), corresponding to an O-2/S molar ratio of 8-10) to a fluidized bed reactor fed with low-sulfate vinasse was sufficient to reduce the biogas H2S-content to an undetectable level. Sulfide was initially oxidized to elemental sulfur, thiosulfate and - most probably - polysulfide. Significant sulfate production did not occur. Bioreactor sludge sampled from the reactor after three weeks' micro-aerobic operation was much faster in oxidizing sulfur than bioreactor sludge sampled during fully anaerobic reactor operation. The reaction proceeded faster with increasing O-2/sulfide ratios. (c) 2006 Elsevier Ltd. All rights reserved.
机译:提议将有限量的氧气引入厌氧生物反应器是降低沼气中硫化物含量的简单技术。本文介绍了生物反应器研究的结果和分批进行的实验,以更好地了解微好氧硫化物氧化过程中硫化合物和氧的命运。将低气流(0.7-0.9 m(3)m-3 d(-1),对应于O-2 / S摩尔比为8-10)引入流化床反应器,该反应器中应加入低硫酸盐的酒糟将沼气中的H2S含量降低到无法检测的水平。硫化物最初被氧化为元素硫,硫代硫酸盐和(很可能是)多硫化物。没有产生大量的硫酸盐。经过三周微需氧操作后,从反应器中取样的生物反应器污泥在氧化硫方面比在完全厌氧反应器操作期间所取样的生物反应器污泥快得多。随着O-2 /硫化物比率的增加,反应进行得更快。 (c)2006 Elsevier Ltd.保留所有权利。

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