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Moving from alcohol to methane biofilters: an experimental study on biofilter performance and carbon distribution

机译:从酒精转移到甲烷生物过滤器:生物过滤性能和碳分布的实验研究

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BACKGROUND Biofilters can be used to eliminate different gaseous pollutants including alcohols (e.g. methanol, ethanol) and methane (CH4) individually or in a mixture. In this regard, the biofilter adaptability to feed composition variation is an industrial requisite. Inlet gas composition changes also give a better insight about carbon input and end-points in biofilters. In this study, the gradual conversions of two biofilters from methanol and ethanol to CH4 were investigated. RESULTS Both biofilters reached 100% removal efficiencies for the alcohols with no initial inoculation. Keeping the total inlet load constant (30 +/- 1.3 g m(-3) h(-1)), CH4 was progressively substituted in the feed with corresponding alcohol:CH4 mass ratios of 3:1, 1:1, 1:3 and 0 g(alcohol):g(CH4). Maximum CH4 removal efficiencies of 52% and 29% were obtained (respectively) for biofilters started with methanol and ethanol. By moving from alcohols to CH4 biofilters, the gas phase output carbon increased from 273 to 666 g(carbon) day(-1) and from 377 to 681 g(carbon) day(-1) respectively for the methanol- and ethanol-based biofilters. CONCLUSION This study showed a successful treatment based on inlet pollutant alteration from methanol or ethanol to CH4 in two separate biofilters. However, the methanol-based biofilter displayed a better performance and a shorter acclimation time for CH4 conversion. (c) 2019 Society of Chemical Industry
机译:背景技术生物过滤器可用于消除不同的气态污染物,包括单独或以混合物单独或在混合物中单独地或甲烷(例如甲醇,乙醇)和甲烷(CH 4)。在这方面,生物膜对饲料组成变异的适应性是工业必需品。入口气体组成变化也更好地介绍了生物过滤器中的碳输入和终点。在该研究中,研究了来自甲醇和乙醇与CH4的两种生物过滤器的逐渐转化。结果Bi过滤器均达到醇的100%除去效果,没有初始接种。保持总入口负载常数(30 +/- 1.3 gm(-3)H(-1)H(-1)),CH4在进料中逐渐取代,相应的醇:CH 4质量比为3:1,1:1,1:3和0g(酒精):g(ch 4)。获得52%和29%的最大CH 4去除效率(分别)用于生物过滤器以甲醇和乙醇开始。通过从醇转移到CH4生物过滤器,气相输出碳分别从273〜666g(碳)日(碳)天(-1)和377至681g(碳)日(碳)天(-1)分别用于甲醇和乙醇基础生物过滤器。结论本研究表明,基于两种单独的生物滤光器中的入口污染物或乙醇到CH4的入口污染物改变。然而,基于甲醇的生物过滤器显示出更好的性能和CH4转换的更短的适应时间。 (c)2019年化学工业协会

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