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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Modification of carbon felt anode with graphene oxide-zeolite composite for enhancing the performance of microbial fuel cell
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Modification of carbon felt anode with graphene oxide-zeolite composite for enhancing the performance of microbial fuel cell

机译:用氧化石墨烯-沸石复合物改性碳毡阳极以增强微生物燃料电池的性能

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摘要

The present investigation explores the potentiality of porous tetrahedral zeolite clay composited with graphene oxide (GO) to be used as superior biocompatible anode material for microbial fuel cell (MFC). Anode base material carbon felt was modified either with GO-zeolite (GZMA) or only GO (GMA) and used as anode in the MFCs. Cyclic voltammetry analysis demonstrated oxidation peaks at −0.29 mV and +0.179 mV with respective peak current of 2.4 mA and 0.22 mA using GZMA. These currents were found to be much higher than the other two tested anodesviz. GMA and bare carbon felt anode. Power density and coulombic efficiency of 280.56 mW/m2and 44 ± 2.8%, respectively, from MFC using GZMA were found to be 3.6 and 2.75-times higher as compared to MFC using bare carbon felt anode (77.82 mW/m2and 16.3 ± 1.4%, respectively). High specific surface area of graphene oxide facilitated extensive support for zeolite capping and superior bacterial cell adhesion property of zeolite enhanced the anode bio-compatibility of GZMA, which resulted in considerable improved performance of MFC.
机译:本研究探索了与氧化石墨烯(GO)复合的多孔四面体沸石粘土作为微生物燃料电池(MFC)优良生物相容性阳极材料的潜力。阳极基碳毡可以用GO沸石(GZMA)或仅用GO(GMA)改性,并用作MFC中的阳极。循环伏安法分析显示,使用GZMA,氧化峰分别在-0.29 mV和+0.179 mV,峰值电流分别为2.4 mA和0.22 mA。发现这些电流比其他两个测试阳极高得多。 GMA和裸碳毡阳极。发现使用GZMA的MFC的功率密度和库仑效率分别为280.56 mW / m2和44±2.8%,比使用裸碳毡阳极的MFC分别高3.6和2.75倍(77.82 2.mW/m2和16.3±1.4%,分别)。氧化石墨烯的高比表面积促进了对沸石封端的广泛支持,并且沸石具有优异的细菌细胞粘附性能,增强了GZMA的阳极生物相容性,从而大大改善了MFC的性能。

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