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太阳能驱动的带有可逆生物电极的微生物燃料电池。

Solar energy powered microbial fuel cell with a reversible bioelectrode.

机构信息

Sub-Department of Environmental Technology, Wageningen University, Bomenweg 2, P.O. Box 8129, 6700 EV Wageningen, The Netherlands.

出版信息

Environ Sci Technol. 2010 Jan 1;44(1):532-7. doi: 10.1021/es902435v.

Abstract

The solar energy powered microbial fuel cell is an emerging technology for electricity generation via electrochemically active microorganisms fueled by solar energy via in situ photosynthesized metabolites from algae, cyanobacteria, or living higher plants. A general problem with microbial fuel cells is the pH membrane gradient which reduces cell voltage and power output. This problem is caused by acid production at the anode, alkaline production at the cathode, and the nonspecific proton exchange through the membrane. Here we report a solution for a new kind of solar energy powered microbial fuel cell via development of a reversible bioelectrode responsible for both biocatalyzed anodic and cathodic electron transfer. Anodic produced protons were used for the cathodic reduction reaction which held the formation of a pH membrane gradient. The microbial fuel cell continuously generated electricity and repeatedly reversed polarity dependent on aeration or solar energy exposure. Identified organisms within biocatalyzing biofilm of the reversible bioelectrode were algae, (cyano)bacteria and protozoa. These results encourage application of solar energy powered microbial fuel cells.

摘要

太阳能微生物燃料电池是一种新兴技术,可通过太阳能为电化学活性微生物供能,这些微生物的燃料来自藻类、蓝细菌或活体高等植物原位光合作用合成的代谢物。微生物燃料电池的一个普遍问题是 pH 膜梯度,这会降低电池电压和输出功率。这个问题是由阳极的产酸、阴极的产碱以及膜的非特异性质子交换引起的。在这里,我们通过开发一种新型的太阳能微生物燃料电池来解决这个问题,该电池通过可逆生物电极来实现阳极和阴极电子转移的生物催化。阳极产生的质子用于阴极还原反应,从而阻止 pH 膜梯度的形成。微生物燃料电池根据需氧或太阳能暴露情况持续发电,并可反复改变极性。在可逆生物电极的生物催化生物膜中鉴定出的生物是藻类、(氰)细菌和原生动物。这些结果鼓励应用太阳能微生物燃料电池。

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