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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The effects of carbon electrode surface properties on bacteria attachment and start up time of microbial fuel cells
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The effects of carbon electrode surface properties on bacteria attachment and start up time of microbial fuel cells

机译:碳电极表面特性对微生物燃料电池细菌附着和启动时间的影响

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摘要

Surface roughness, porosity and contact angles of different carbon paper materials (TORAY paper with PTFE from 0% to 60% of and SGL paper with 0% and 20% of PTFE) suitable as electrodes in microbial fuel cells were investigated. The changes of contact angle between dry and clean anode surfaces and the ones after exposure to wastewater were measured using different liquids (pure water and sodium acetate solutions). The results showed that bacterial attachment to the carbon papers caused a significant decrease in the contact angle, shifting the surface property from highly hydrophobic to slightly hydrophobic or even hydrophilic. The quantity of biofilm attached on the anode surface decreased with the increase in PTFE content. Positive correlation between dry biomass content and the amount of pores at the small scale (5-10 urn) was observed. The start up time of MFCs was shortened by using the carbon anodes without PTFE or with low PTFE content (<20 wt%), probably due to the easier biofilm attachment on the surface. On the contrary, the carbon anodes with high PTFE contents had longer start up time. After several cycles of MFC operation, the performances became similar (20-30 mV of differences) regardless of the carbon anode used.
机译:研究了适合用作微生物燃料电池电极的不同碳纸材料(PTFE含量为0%至60%的东丽纸和PTFE含量为0%和20%的SGL纸)的表面粗糙度,孔隙率和接触角。使用不同的液体(纯水和乙酸钠溶液)测量干燥,清洁阳极表面与暴露于废水后的阳极表面之间的接触角变化。结果表明,细菌附着在碳纸上会导致接触角显着减小,从而使表面性能从高度疏水性转变为略微疏水性甚至亲水性。随着PTFE含量的增加,附着在阳极表面的生物膜数量减少。在小规模(5-10微米)下,干生物量含量与孔隙数量之间呈正相关。通过使用不含PTFE或PTFE含量低(<20 wt%)的碳阳极,可以缩短MFCs的启动时间,这可能是由于生物膜更易于附着在表面上。相反,具有高PTFE含量的碳阳极的启动时间更长。经过数个MFC操作周期后,无论使用哪种碳阳极,其性能都变得相似(相差20-30 mV)。

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