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首页> 外文期刊>International Biodeterioration & Biodegradation >A comparison of mono- and multi-valent ions as stack feed solutions in microbial reverse-electrodialysis electrolysis cells and their effects on hydrogen generation
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A comparison of mono- and multi-valent ions as stack feed solutions in microbial reverse-electrodialysis electrolysis cells and their effects on hydrogen generation

机译:微生物逆电渗析电解池中单价和多价离子作为堆栈进料溶液的比较及其对产氢的影响

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Microbial reverse-electrodialysis cells (MRECs) are an emerging technology combining microbial electrolysis cells (MEC) with reverse electrodialysis (RED) for the production of hydrogen gas. In this study, the MREC system used monovalent ions (Na+ and Cl-) and a mixture of mono- and multi-valent ions (Mg2+ and SO42-) as stack feed solutions, which were compared to determine the effect of the presence of multivalent ions on MREC performance. The MREC system operated under batch conditions using acetate as a substrate while the RED stack operated under continuous flow conditions using pure NaCl and a mixture with a 10% molar fraction of multivalent ions and a 90% molar fraction of monovalent ions as stack feed solutions (flow rate = 1.2 mL min(-1)). When using 10% of MgSO4 as a stack feed solution, the maximum current achieved for the MREC system decreased from 4.2 to 3.7 mA compared to the pure NaCl. Moreover, the quantity of hydrogen produced, the production rate, and yield also decreased by approximately 32, 35, and 23%, respectively. The results obtained from this study demonstrated that the presence of multivalent ions had an adverse effect on MREC performance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:微生物反向电渗析池(MREC)是一种新兴技术,将微生物电解池(MEC)与反向电渗析(RED)相结合来生产氢气。在这项研究中,MREC系统使用一价离子(Na +和Cl-)以及一价和多价离子的混合物(Mg2 +和SO42-)作为堆栈进料溶液,将其进行比较以确定存在多价离子的影响离子对MREC性能的影响。 MREC系统在以醋酸盐为底物的间歇条件下运行,而RED堆栈在使用纯NaCl和摩尔分数为10%的多价离子和90%摩尔分数的一价离子的混合物作为连续进料溶液的连续流动条件下运行(流速= 1.2 mL min(-1))。当使用10%的MgSO4作为燃料电池堆进料溶液时,与纯NaCl相比,MREC系统获得的最大电流从4.2降至3.7 mA。此外,氢气的产生量,生产率和产率也分别降低了约32%,35%和23%。这项研究获得的结果表明,多价离子的存在对MREC性能有不利影响。 (C)2016 Elsevier Ltd.保留所有权利。

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