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碳纳米管粉末作为电极修饰剂来增强微生物燃料电池中阳极生物膜的活性。

Carbon nanotube powders as electrode modifier to enhance the activity of anodic biofilm in microbial fuel cells.

机构信息

State Key Joint Laboratory of Environment Simulation and Pollution Control, Department of Environmental Science and Engineering, Tsinghua University, Haidian District, Beijing 100084, PR China.

出版信息

Biosens Bioelectron. 2011 Feb 15;26(6):3000-4. doi: 10.1016/j.bios.2010.12.002. Epub 2010 Dec 10.

Abstract

Carbon nanotube (CNT) is a promising electrode material and has been used as an anode modifier in microbial fuel cells (MFCs). In this study, a new method of simultaneously adding CNT powders and Geobacter sulfurreducens into the anode chamber of a MFC was used, aiming to form a composite biofilm on the anode. The performance of MFCs such as startup time and steady-state power generation was investigated under conditions of different CNT powders dosages. Results showed that both the startup time and the anodic resistance were reduced. The optimal dosage of CNT powders pre-treated by acid was 4 mg/mL for the anode chamber with an effective volume of 25 mL. The anodic resistance and output voltage of the MFC with CNT powders addition were maintained around 180 Ω and 650 mV during 40 days operation, while those of the MFC without CNT powders addition increased from 250 Ω to 540 Ω and decreased from 630 mV to 540 mV, respectively, demonstrating that adding CNT powders helped stabilize the anodic resistance, thus the internal resistance and power generation during long-term operation. Based on cyclic voltammogram, the electrochemical activity of anodic biofilm was enhanced by adding CNT powders, though no significant increase of the biomass in anodic biofilm was detected by phospholipids analysis. There was no remarkable change of ohmic resistance with an addition of CNT powders revealed by current interrupt method, which indicated that the rate of mass transfer might be promoted by the presence of CNT powders.

摘要

碳纳米管(CNT)是一种很有前途的电极材料,已被用作微生物燃料电池(MFC)的阳极改性剂。在这项研究中,采用了一种新的方法,即将 CNT 粉末和脱硫弧菌同时添加到 MFC 的阳极室中,目的是在阳极上形成复合生物膜。研究了不同 CNT 粉末剂量条件下 MFC 的启动时间和稳态发电性能等。结果表明,启动时间和阳极电阻都降低了。对于有效体积为 25 mL 的阳极室,预处理 CNT 粉末的最佳用量为 4 mg/mL。添加 CNT 粉末的 MFC 的阳极电阻和输出电压在 40 天的运行过程中保持在 180 Ω 和 650 mV 左右,而不添加 CNT 粉末的 MFC 的阳极电阻和输出电压分别从 250 Ω 增加到 540 Ω,从 630 mV 降低到 540 mV,表明添加 CNT 粉末有助于稳定阳极电阻,从而稳定内阻和长期运行时的发电。基于循环伏安法,添加 CNT 粉末增强了阳极生物膜的电化学活性,尽管通过磷脂分析未检测到阳极生物膜中生物质的显著增加。电流中断法显示,添加 CNT 粉末后欧姆电阻没有明显变化,这表明 CNT 粉末的存在可能促进了传质速率。

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