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Enhancement of methanol production from synthetic gas mixture by Methylosinus sporium through covalent immobilization

机译:通过共价固定增强甲基窦孢子气生成的合成气混合物产生的甲醇。

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Both methane (CH4) and carbon dioxide (CO2) are major greenhouse gases (GHGs); hence, effective processes are required for their conversion into useful products. CH4 is used by a few groups of methanotrophs to produce methanol. However, to achieve economical and sustainable CH4 reduction strategies, additional strains are needed that can exploit natural CH4 feed stocks. In this study, we evaluated methanol production by Methylosinus sporium from CH4 and synthetic gas. The optimum pH, temperature, incubation period, substrate, reaction volume to headspace ratio, and phosphate buffer concentration were determined to be 6.8, 30 C, 24 h, 50% CH4, 1:5, and 100 mM (with 20 mM MgC12 [a methanol dehydrogenase inhibitor]), respectively. Optimization of the production conditions and process parameters significantly improved methanol production from 0.86 mM to 5.80 mM. Covalent immobilization of M. sporium on Chitosan significantly improved the stability and reusability for up to 6 cycles of reuse under batch culture conditions. The immobilized cells utilized a synthetic gas mixture containing CH4, CO2, and hydrogen (at a ratio of 6:3:1) more efficiently than free cells, with a maximum methanol production of 6.12 mM. This is the first report of high methanol production by M. sporium covalently immobilized on a solid support from a synthetic gas mixture. Utilization of cost-effective feedstocks derived from natural resources will be an economical and environmentally friendly way to reduce the harmful effects of GHGs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:甲烷(CH4)和二氧化碳(CO2)都是主要的温室气体(GHG);因此,需要有效的过程才能将其转化为有用的产品。 CH4被少数甲烷营养生物用于生产甲醇。但是,为了实现经济,可持续的减少CH4的策略,需要使用天然CH4原料的其他菌株。在这项研究中,我们评估了甲烷甲烷孢子从CH4和合成气生产甲醇的情况。最佳的pH,温度,孵育时间,底物,反应体积与顶空比和磷酸盐缓冲液的浓度确定为6.8、30 C,24 h,50%CH4、1:5和100 mM(含20 mM MgC12 [甲醇脱氢酶抑制剂])。生产条件和工艺参数的优化将甲醇生产量从0.86 mM显着提高到5.80 mM。在分批培养条件下,孢子菌共价固定在壳聚糖上可显着提高稳定性和可重复使用性,最多可重复使用6个周期。固定化细胞比游离细胞更有效地利用含有CH4,CO2和氢(比例为6:3:1)的合成气混合物,最大甲醇产量为6.12 mM。这是共价固定在固相支持物上由合成气混合物产生的M. sporium高产甲醇的第一个报道。利用源自自然资源的具有成本效益的原料将是减少温室气体有害影响的一种经济和环境友好的方式。 (C)2016 Elsevier Ltd.保留所有权利。

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