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Coal-Packed Methane Biofilter for Mitigation of Green House Gas Emissions from Coal Mine Ventilation Air

机译:燃煤甲烷生物过滤器用于缓解煤矿通风空气中的温室气体排放

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摘要

Methane emitted by coal mine ventilation air (MVA) is a significant greenhouse gas. A mitigation strategy is the oxidation of methane to carbon dioxide, which is approximately twenty-one times less effective at global warming than methane on a mass-basis. The low non-combustible methane concentrations at high MVA flow rates call for a catalytic strategy of oxidation. A laboratory-scale coal-packed biofilter was designed and partially removed methane from humidified air at flow rates between 0.2 and 2.4 L min−1 at 30°C with nutrient solution added every three days. Methane oxidation was catalysed by a complex community of naturally-occurring microorganisms, with the most abundant member being identified by 16S rRNA gene sequence as belonging to the methanotrophic genus Methylocystis. Additional inoculation with a laboratory-grown culture of Methylosinus sporium, as investigated in a parallel run, only enhanced methane consumption during the initial 12 weeks. The greatest level of methane removal of 27.2±0.66 g methane m−3 empty bed h−1 was attained for the non-inoculated system, which was equivalent to removing 19.7±2.9% methane from an inlet concentration of 1% v/v at an inlet gas flow rate of 1.6 L min−1 (2.4 min empty bed residence time). These results show that low-cost coal packing holds promising potential as a suitable growth surface and contains methanotrophic microorganisms for the catalytic oxidative removal of methane.
机译:煤矿通风空气(MVA)排放的甲烷是一种重要的温室气体。缓解策略是将甲烷氧化为二氧化碳,这种方法在全球变暖方面的有效性比甲烷在质量基础上低约21倍。在较高的MVA流速下,较低的不可燃甲烷浓度要求采用氧化催化策略。设计了一个实验室规模的装煤生物过滤器,并在30°C下以0.2至2.4 L min -1 的流量从湿润的空气中部分去除了甲烷,每三天添加一次营养液。甲烷氧化是由复杂的天然微生物共同体催化的,其中最丰富的成员被16S rRNA基因序列鉴定为属于甲基营养型甲基囊藻。在平行运行中进行的研究显示,实验室培养的甲基海棠孢子虫的额外接种仅增加了最初12周的甲烷消耗量。对于未接种系统,最大脱气水平为27.2±0.66 g甲烷m -3 空床h -1 ,相当于去除19.7±在入口气体流速为1.6 L min -1 (2.4分钟空床停留时间)下,入口浓度为1%v / v时产生的2.9%甲烷。这些结果表明,低成本的煤填充物作为合适的生长表面具有广阔的发展前景,并且含有甲烷营养型微生物,可用于甲烷的催化氧化去除。

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