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Aerated biofilters with multiple-level air injection configurations to enhance biological treatment of methane emissions

机译:具有多级空气喷射配置的充气生物过滤器,以提高甲烷排放的生物学处理

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摘要

Aiming to improve conventional methane biofilter performance, a multiple-level aeration biofilter design is proposed. Laboratory flow-through column experiments were conducted to evaluate three actively-aerated methane biofilter configurations. Columns were aerated at one, two, and three levels of the bed depth, with air introduced at flow rates calculated from methane oxidation reaction stoichiometry. Inlet methane loading rates were increased in five stages between 6 and 18 mL/min. The effects of methane feeding rate, levels of aeration, and residence time on methane oxidation rates were determined. Samples collected after completion of flow-through experiments were used to determine methane oxidation kinetic parameters, V-max, K-m, and methanotrophic community distribution across biofilter columns. Results obtained from mixed variances analysis and response surfaces, as well as methanotrophic activity data, suggested that, biofilter column with two aeration levels has the most even performance over time, maintaining 85.1% average oxidation efficiency over 95 days of experiments. (C) 2017 Elsevier Ltd. All rights reserved.
机译:旨在改善常规的甲烷生物滤波器性能,提出了一种多级曝气生物滤光器设计。进行实验室流通柱实验,以评估三种积极充气的甲烷生物滤波器配置。柱在床深度的一个,两个和三个水平上充气,空气以由甲烷氧化反应化学计量计算的流速引入。入口甲烷加载率在6至18mL / min之间的五个阶段增加。确定甲烷进料速率,通气水平和停留时间对甲烷氧化率的影响。在完成流通实验后收集的样品用于在生物过滤柱上测定甲烷氧化动力学参数,V-MAX,K-M和甲基营养群落分布。从混合差异分析和响应表面获得的结果以及甲脂肪养殖活动数据,建议,具有两个曝气水平的生物过滤器柱随着时间的推移,在95天的实验中保持85.1%的平均氧化效率。 (c)2017 Elsevier Ltd.保留所有权利。

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