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基于直接生物电催化的生物燃料电池。

Biofuel cell based on direct bioelectrocatalysis.

作者信息

Ramanavicius Arunas, Kausaite Asta, Ramanaviciene Almira

机构信息

Department of Analytical and Environmental Chemistry, Vilnius University, Naugarduko 24, 03225 Vilnius 6, Lithuania.

出版信息

Biosens Bioelectron. 2005 Apr 15;20(10):1962-7. doi: 10.1016/j.bios.2004.08.032.

Abstract

A biofuel cell, consisting of two 3mm diameter carbon rod electrodes and operating at ambient temperature in aqueous solution, pH 6, is described. Biofuel cell based on enzymes able to exchange directly electrons with carbon electrodes was constructed and characterized. Anode of the biofuel cell was based on immobilized Quino-hemoprotein alcohol dehydrogenase from Gluconobacter sp. 33 (QH-ADH), cathode on co-immobilized glucose oxidase from Aspergilus niger (GO(x)) and microperoxidase 8 from the horse heart (MP-8) acting in the consecutive mode. Two enzymes GO(x) and MP-8 applied in the design of biofuel cell cathode were acting in consecutive mode and by hydrogen peroxide oxidized MP-8 was directly accepting electrons from carbon rod electrode. If ethanol was applied as an energy source the maximal open circuit potential of the biofuel cell was -125 mV. If glucose was applied as energy source the open circuit potential of the cell was +145 mV. The maximal open circuit potential (270 mV) was achieved in the presence of extent concentration (over 2 mM) of both substrates (ethanol and glucose). Operational half-life period (tau(1/2)) of the biofuel cell was found to be 2.5 days.

摘要

本文描述了一种生物燃料电池,它由两根直径为3mm的碳棒电极组成,在pH为6的水溶液中于室温下运行。构建并表征了基于能够与碳电极直接交换电子的酶的生物燃料电池。该生物燃料电池的阳极基于固定化的来自葡糖杆菌属33号菌株的醌-血红蛋白醇脱氢酶(QH-ADH),阴极基于共固定化的来自黑曲霉的葡萄糖氧化酶(GO(x))和来自马心脏的微过氧化物酶8(MP-8),它们以连续模式起作用。应用于生物燃料电池阴极设计的两种酶GO(x)和MP-8以连续模式起作用,并且被过氧化氢氧化的MP-8直接从碳棒电极接受电子。如果使用乙醇作为能源,该生物燃料电池的最大开路电位为-125 mV。如果使用葡萄糖作为能源,电池的开路电位为+145 mV。在两种底物(乙醇和葡萄糖)浓度较高(超过2 mM)的情况下,实现了最大开路电位(270 mV)。发现该生物燃料电池的运行半衰期(tau(1/2))为2.5天。

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