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Microbial Electrosynthesis:Feeding Microbes Electricity to Convert carbon Dioxide and Water to Multi Carbon Extracellular Organic Compounds

机译:微生物电合成:喂养微生物电力将二氧化碳和水转化为多碳细胞外有机化合物

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The possibility of providing the acetogenic microorganism Sporomusa ovata with electrons delivered directly to the cells with a graphite electrode for the reduction of carbon dioxide to organic compounds was investigated. Biofilms of S. ovata growing on graphite cathode surfaces consumed electrons with the reduction of carbon dioxide to acetate and small amounts of 2-oxobutyrate. Electrons appearing in these products accounted for over 85% of the electrons consumed. These results demonstrate that microbial production of multicarbon organic compounds from carbon dioxide and water with electricity as the energy source is feasible. Importance Reducing carbon dioxide to multicarbon organic chemicals and fuels with electricity has been identified as an attractive strategy to convert solar energy that is harvested intermittently with photovoltaic technology and store it as covalent chemical bonds. The organic compounds produced can then be distributed via existing infrastructure. Nonbiological electrochemical reduction of carbon dioxide has proven problematic. The results presented here suggest that microbiological catalysts may be a robust alternative, and when coupled with photovoltaics, current-driven microbial carbon dioxide reduction represents a new form of photosynthesis that might convert solar energy to organic products more effectively than traditional biomass-based strategies.
机译:研究了为产乙酸微生物卵圆孢子提供直接通过石墨电极将电子直接传递到细胞中以将二氧化碳还原为有机化合物的可能性。在石墨阴极表面上生长的卵形链球菌生物膜消耗电子,同时二氧化碳还原为乙酸盐和少量的2-氧代丁酸酯。这些产品中出现的电子占消耗电子的85%以上。这些结果表明,以电力为能源从二氧化碳和水中微生物生产多碳有机化合物是可行的。重要性用电将二氧化碳减少为多碳有机化学物质和燃料已被认为是一种有吸引力的策略,可以转换通过光伏技术间歇性收集的太阳能并将其存储为共价化学键。然后可以通过现有的基础设施分配产生的有机化合物。已证明二氧化碳的非生物电化学还原是有问题的。此处提出的结果表明,微生物催化剂可能是一种可靠的替代方法,当与光伏技术结合使用时,电流驱动的微生物二氧化碳减排代表了一种新的光合作用形式,与传统的基于生物质的策略相比,它可以更有效地将太阳能转化为有机产品。

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