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Melamine modified carbon felts anode with enhanced electrogenesis capacity toward microbial fuel cells 被引量:5
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作者 Yang'en Xie Zhaokun Ma +2 位作者 Huaihe Song Zachary A.Stoll Pei Xu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2017年第1期81-86,共6页
Surface electropositivity and low internal resistance are important factors to improve the anode performance in microbial fuel cells(MFCs). Nitrogen doping is an effective way for the modification of traditional carbo... Surface electropositivity and low internal resistance are important factors to improve the anode performance in microbial fuel cells(MFCs). Nitrogen doping is an effective way for the modification of traditional carbon materials. In this work, heat treatment and melamine were used to modify carbon felts to enhance electrogenesis capacity of MFCs. The modified carbon felts were characterized using X-ray photoelectron spectroscopy(XPS), scanning electron microscope(SEM), atomic force microscopy(AFM)and malvern zeta potentiometer. Results show that the maximum power densities under heat treatment increase from 276.1 to 423.4 m W/m^2(700 °C) and 461.5 m W/m^2(1200 °C) and further increase to472.5 m W/m^2(700 °C) and 515.4 m W/m^2(1200 °C) with the co-carbonization modification of melamine.The heat treatment reduces the material resistivity, improves the zeta potential which is beneficial to microbial adsorption and electron transfer. The addition of melamine leads to the higher content of surface pyridinic and quaternary nitrogen and higher zeta potential. It is related to higher MFCs performance. Generally, the melamine modification at high temperature increases the feasibility of carbon felt as MFCs' s anode materials. 展开更多
关键词 Microbial fuel cells Anode materials carbon felts MODIFICATION MELAMINE
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介孔碳修饰碳毡作为全钒氧化还原液流电池阳极的性能(英文)
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作者 Charles N.Schmidt 曹国忠 《Science China Materials》 SCIE EI CSCD 2016年第12期1037-1050,共14页
本文采用分散涂层法在聚丙烯腈碳毡表面涂覆溶胶凝胶处理的间二苯酚糖醛介孔碳,合成了一种新型的全钒氧化还原液流电池阳极材料.介孔碳涂层修饰的碳毡分别在900和1100°C下经过退火处理,对所得样品的形貌、表面化学性质、电化学性... 本文采用分散涂层法在聚丙烯腈碳毡表面涂覆溶胶凝胶处理的间二苯酚糖醛介孔碳,合成了一种新型的全钒氧化还原液流电池阳极材料.介孔碳涂层修饰的碳毡分别在900和1100°C下经过退火处理,对所得样品的形貌、表面化学性质、电化学性能进行了表征,并与未经修饰的碳毡进行了比较.结果表明,介孔碳涂层的引入显著增加了材料的比表面积,特别是1100°C下退火处理的样品,其表面的活性含氧基团明显增多.介孔碳涂层对电化学性能的影响呈现出混合效应.循环伏安法测试表明,介孔碳涂层修饰使V(IV)/V(V)氧化还原反应对的氧化和还原反应的最大电淋度增加了约3 0%,这可以归因于材料表面活性反应位点的增加.然而,介孔碳涂层同时导致了电导率的降低,体现为氧化还原峰分离和电荷迁移阻抗的增加.对电导率的这一负面效应可通过1100°C以上高温热处理缓解,从而改善其表面石墨化以减弱氧化还原峰分离和电荷迁移阻抗,使其能与未修饰的碳毡相当. 展开更多
关键词 vanadium redox flow battery carbon felt mesoporous carbon CATALYST surface area
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