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Biological oxidation of hydrogen sulfide under steady and transient state conditions in an immobilized cell biofilter

机译:固定细胞生物滤池中稳态和瞬态条件下硫化氢的生物氧化

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The removal of hydrogen sulfide (H2S) was investigated in a lab scale biofilter packed with biomedia, encapsulated by sodium alginate and polyvinyl alcohol (PVA). The main H2S oxidation products were SO42-, SO32-, S2- and S-0. The immobilized cell biofilter required no separate acclimatization period and showed high removal efficiencies (RE) within the first few days of experiments. The removal efficiencies in the biofilter were consistently greater than 99% even when H2S loading was 6 g m(-3) h(-1). The maximum elimination capacity achieved in this study is 8 g H2S m(-3) h(-1) at a loading rate of 13 g H2S m(-3) h(-1). The response of the immobilized cells to fluctuations in inlet concentration and flow rate was determined by subjecting the biofilter to inlet loads of up to 10 g HZS m(-3) h(-1). The biofilter responded effectively to these shock loading conditions and convalesced rapidly within 4-8 h. Pressure drop values were consistently less throughout the operational period. The results from this study suggest that an immobilized cell biofilter is effective in treating H2S under steady and transient operating conditions. (c) 2007 Elsevier Ltd. All rights reserved.
机译:在实验室规模的生物滤池中研究了硫化氢(H2S)的去除,该滤池装有生物介质,并用藻酸钠和聚乙烯醇(PVA)封装。 H2S的主要氧化产物是SO42-,SO32-,S2-和S-0。固定的细胞生物滤池不需要单独的适应期,并且在实验的前几天内显示出很高的去除效率(RE)。即使当H2S负载为6 g m(-3)h(-1)时,生物滤池中的去除效率始终高于99%。在这项研究中实现的最大消除能力是8 g H2S m(-3)h(-1),加载速率为13 g H2S m(-3)h(-1)。通过使生物滤池承受高达10 g HZS m(-3)h(-1)的入口负荷,可以确定固定化细胞对入口浓度和流速波动的响应。生物滤池对这些冲击负荷条件做出了有效反应,并在4-8小时内迅速恢复。在整个运行期间,压降值始终较小。这项研究的结果表明,固定的细胞生物滤池可在稳定和短暂的运行条件下有效治疗H2S。 (c)2007 Elsevier Ltd.保留所有权利。

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