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用于增强空气阴极微生物燃料电池发电的外部 CO2 和水供应。

External CO2 and water supplies for enhancing electrical power generation of air-cathode microbial fuel cells.

机构信息

Division of Environmental Engineering, Faculty of Engineering, Hokkaido University , North 13, West 8, Kita-ku, Sapporo, Hokkaido 060-8628, Japan.

出版信息

Environ Sci Technol. 2014 Oct 7;48(19):11204-10. doi: 10.1021/es5021197. Epub 2014 Sep 19.

Abstract

Alkalization on the cathode electrode limits the electrical power generation of air-cathode microbial fuel cells (MFCs), and thus external proton supply to the cathode electrode is essential to enhance the electrical power generation. In this study, the effects of external CO2 and water supplies to the cathode electrode on the electrical power generation were investigated, and then the relative contributions of CO2 and water supplies to the total proton consumption were experimentally evaluated. The CO2 supply decreased the cathode pH and consequently increased the power generation. Carbonate dissolution was the main proton source under ambient air conditions, which provides about 67% of total protons consumed for the cathode reaction. It is also critical to adequately control the water content on the cathode electrode of air-cathode MFCs because the carbonate dissolution was highly dependent on water content. On the basis of these experimental results, the power density was increased by 400% (143.0 ± 3.5 mW/m(2) to 575.0 ± 36.0 mW/m(2)) by supplying a humid gas containing 50% CO2 to the cathode chamber. This study demonstrates that the simultaneous CO2 and water supplies to the cathode electrode were effective to increase the electrical power generation of air-cathode MFCs for the first time.

摘要

阴极的碱化作用限制了空气阴极微生物燃料电池 (MFC) 的发电能力,因此向阴极电极外部供应质子对于提高发电能力是至关重要的。在本研究中,考察了向阴极电极外部供应 CO2 和水对发电的影响,然后实验评估了 CO2 和水供应对总质子消耗的相对贡献。CO2 供应降低了阴极 pH 值,从而提高了发电效率。在环境空气条件下,碳酸盐溶解是阴极反应的主要质子源,提供了约 67%的总质子消耗。充分控制空气阴极 MFC 阴极电极上的含水量也至关重要,因为碳酸盐溶解高度依赖于含水量。基于这些实验结果,通过向阴极室供应含有 50%CO2 的湿气体,功率密度从 143.0 ± 3.5 mW/m2 增加到 575.0 ± 36.0 mW/m2,增加了 400%。本研究首次证明,同时向阴极电极供应 CO2 和水对于提高空气阴极 MFC 的发电能力是有效的。

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