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Effect of liquid surface area on hydrogen sulfide oxidation during micro-aeration in dairy manure digesters

机译:液体表面积对奶牛粪便消化池微曝气过程中硫化氢氧化的影响

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摘要

Although there are a variety of commercially available biological and chemical treatments for removal of hydrogen sulfide (H2S) from biogas, managing biogas H2S remains a significant challenge for agricultural digesters where labor and operational funds are very limited compared to municipal and industrial digesters. The objectives of this study were to evaluate headspace aeration for reducing H2S levels in low cost plug flow digesters and to characterize the relationship between the liquid surface area and H2S oxidation rates. Experiments with replicate field scale plug flow digesters showed that H2S levels decreased from 3500 ppmv to <100 ppmv when headspace oxygen levels were 0.5 to 1%. Methane production was not affected by aeration rates that resulted in headspace oxygen levels of up to 1%. Pilot scale experiments using 65 to 104 L desulfurization units showed that H2S oxidation rates increased with increases in liquid surface area. These results support the hypothesis that H2S oxidation rates are limited, in part, by the surface area available for oxygen transfer, and can be increased by growth of biofilms containing H2S oxidizing bacteria. Maximum removal rates corresponded to 40 to 100 g S m-2 d-1 of liquid surface area at biogas retention times of 30 to 40 min.
机译:尽管有多种商业化的生物和化学处理方法可用于从沼气中去除硫化氢(H2S),但是对于沼气池来说,管理沼气H2S仍然是一项重大挑战,因为与市政和工业沼气池相比,劳动力和运营资金非常有限。这项研究的目的是评估顶空曝气,以降低低成本推流式消化池中的H2S水平,并表征液体表面积与H2S氧化速率之间的关系。复制现场规模塞流消化器的实验表明,当顶空氧含量为0.5%至1%时,H2S含量从3500 ppmv降至<100 ppmv。甲烷的生产不受通气速率的影响,通气速率导致顶空氧含量高达1%。使用65至104 L脱硫装置的中试实验表明,H2S氧化速率随液体表面积的增加而增加。这些结果支持以下假设:H2S氧化速率部分受限于可用于氧气转移的表面积,并且可以通过含有H2S氧化细菌的生物膜的生长而增加。在沼气保留时间为30至40分钟时,最大去除率相当于40至100 g S m -2 d -1 液体表面积。

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