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Improved methane elimination by methane-oxidizing bacteria immobilized on modified oil shale semicoke

机译:通过固定在改性油页岩半焦上的甲烷氧化细菌改善了甲烷的清除

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Methane is a greenhouse gas with significant global warming potential. The methane-oxidizing bacteria (MOB) immobilized on biocarrier could perform effectively and environmentally in methane elimination. To further improve the efficiencies of MOB immobilization and methane elimination, the surface biocompatibility of biocarrier needs to be improved. In this work, the oil shale semicoke (SC) was chemically modified by sodium p-styrenesulfonate hydrate (SS) and 2-(methacryloyloxy) ethyltrimethylammonium chloride (DMC) to promote surface hydrophilicity and positive charge, respectively. Results revealed that, under methane concentrations of similar to 10% (v/v) and similar to 0.5% (v/v),the MOB immobilized on semicoke modified with 1.0 mol L-1 of SS permitted improved methane elimination capacities (ECs), which were 15.02% and 11.11% higher than that on SC, respectively. Additionally, under methane concentrations of similar to 10% (v/v) and similar to 0.5% (v/v), the MOB immobilized on semicoke modified with 0.4 mol L-1 of DMC held superior ECs, which were 17.88% and 11.29% higher than that on SC, respectively. The qPCR analysis indicated that the MOB abundance on modified semicoke were higher than that on SC. In consequence, the surface biocompatibility of semicoke could be promoted by SS and DMC modifications, which potentially provided methods for other biocarriers to improve surface biocompatibility. (C) 2018 Elsevier B.V. All rights reserved.
机译:甲烷是一种具有巨大全球变暖潜能的温室气体。固定在生物载体上的甲烷氧化细菌(MOB)可以有效,环境地消除甲烷。为了进一步提高MOB固定化和甲烷消除的效率,需要改善生物载体的表面生物相容性。在这项工作中,用对苯乙烯磺酸钠水合物(SS)和2-(甲基丙烯酰氧基)乙基三甲基氯化铵(DMC)对油页岩半焦(SC)进行化学改性,以分别提高表面亲水性和正电荷。结果表明,在甲烷浓度接近10%(v / v)且接近0.5%(v / v)的情况下,固定在用1.0 mol L-1 SS改性的半焦上的MOB可以提高甲烷消除能力(ECs) ,分别比SC高15.02%和11.11%。另外,在甲烷浓度接近10%(v / v)且接近0.5%(v / v)的情况下,固定在用0.4 mol L-1 DMC改性的半焦上的MOB保持优异的EC,分别为17.88%和11.29 %分别比SC高。 qPCR分析表明,改性半焦的MOB丰度高于SC。结果,可以通过SS和DMC修饰来促进半焦的表面生物相容性,这可能为其他生物载体提供改善表面生物相容性的方法。 (C)2018 Elsevier B.V.保留所有权利。

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