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首页> 外文期刊>Journal of power sources >Low-grade heat energy driven microbial electrosynthesis for ethanol and acetate production from CO_2 reduction
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Low-grade heat energy driven microbial electrosynthesis for ethanol and acetate production from CO_2 reduction

机译:低级热能驱动的微生物电气合成乙醇和醋酸乙酸盐从CO_2减少产生

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摘要

Microbial reverse-electrodialysis electrosynthesis cell (MREC) is an attractive strategy for wastewater treatment and valuable chemicals production from CO2 reduction. Herein, one innovative MREC is proposed to drive CO2 conversion to ethanol and acetate with low-grade waste heat energy coupled with thermolytic solutions (e.g., NH4HCO3 solution) as driven power sources. In such MREC, the maximum ethanol and acetate accumulated concentration of 5.23 +/- 0.35 and 2.85 +/- 0.38 mM are obtained, catalyzed by Clostridium ljungdahlii ERI-2 with production rates of 130.75 +/- 8.75 and 137.92 +/- 7.92 mmol m(-2 )d(-1), respectively. Moreover, the current as the key parameter for the CO2 conversion, which can be controlled by the salinity ratios of NH4HCO3 solutions and medium of Clostridium ljungdahlii ERI-2. This work for the first time proves the potential of the MREC for simultaneous biofuels production, CO2 reduction, wastewater treatment and waste heat energy utilization.
机译:微生物反向电渗析电渗细胞(MREC)是一种有吸引力的废水处理和来自CO2减少生产的有价值的化学品的策略。在此,提出一种创新的MREC,以将CO 2转化为乙醇和醋酸乙醇酯,其低级废热能量与热解溶液(例如,NH4HCO3溶液)作为驱动电源。在这种MREC中,获得的最大乙醇和醋酸盐累积浓度为5.23 +/- 0.35和2.85 +/- 0.38mm,由Ljungdahlii Eri-2催化,生产率为130.75 +/- 8.75和137.92 +/- 7.92mmol m(-2)d(-1)分别。此外,作为CO2转化的关键参数的电流,可以通过NH4HCO3溶液的盐度比和梭菌菌株培养基的盐度比来控制。这项工作首次证明了MREC的潜力,用于同时生物燃料生产,二氧化碳还原,废水处理和废热能量利用。

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