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催化学报  2014 

表面改性炭材料在微生物燃料电池中的应用

DOI: 10.1016/S1872-2067(14)60023-1, PP. 770-775

Keywords: 微生物燃料电池,氧还原反应,碳粉,VulcanXC-72R碳黑,表面改性,产电性能

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Abstract:

?研究了在空气阴极微生物燃料电池中修饰方法如硝酸处理和硝酸-氨水酸碱等对XC-72R作为阴极氧还原催化剂催化活性的影响,并且使用傅里叶变换红外光谱(FTIR)、Boehm滴定法和X射线光电子能谱(谱(XPS)等手段对催化剂进行了表征.FTIR测试证明硝酸处理可引入含氧基团氨水处理可引入含氮基团.另外,还测试了含有不同表面官能团的XC-72R对氧还原的活性,并将其作为阴极催化剂用在MFC中,测试了电池性能.实验表明,经酸碱修饰的XC-72R作为空气阴极MFC的催化剂具有很好的应用前景.

References

[1]  Lefebvre O, Tan Z, Shen Y, Ng H Y. Bioresource Technol, 2013, 127: 158
[2]  Ieropoulos I, Galvez A, Greenman J. Enzyme Microbial Technol, 2013, 52: 32
[3]  Futamata H, Bretschger O, Cheung A, Kan J, Owen R, Nealson K H. J Biosci Bioeng, 2013, 115: 58
[4]  Yang S Q, Jia B Y, Liu H. Bioresource Technol, 2009, 100: 1197
[5]  Yu E H, Cheng S, Logan B E, Scott K. J Appl Electrochem, 2009, 39: 705
[6]  Li X, Hu B, Suib S, Lei Y, Li B. J Power Sources, 2010, 195: 2586
[7]  Morris J M, Jin S, Wang J, Zhu C, Urynowicz M A. Electrochem Commun, 2007, 9: 1730
[8]  Zhu K N, Qin H Y, Liu B H, Li Z P. J Power Sources, 2011, 196: 182
[9]  Qin H Y, Liu Z X, Ye L Q, Zhu J K and Li Z P. J Power Sources, 2009, 192: 385
[10]  Nguyen Cong H, El Abbassi K, Gautier J, Chartier P. Electrochim Acta, 2005, 50: 1369
[11]  Sui S, Zhuo X L, Su K H, Yao X Y, Zhang J L, Du S F, Kendal K. J Energy Chem, 2013, 22: 477
[12]  Harnisch F, Wirth S, Schr?der U. Electrochem Commun, 2009, 11: 2253
[13]  Yuan Y, Zhou S G, Zhuang L. J Power Sources, 2010, 195: 3490
[14]  Duteanu N, Erable B, Senthil Kumar S M, Ghangrekar M M, Scott K. Bioresource Technol, 2010, 101: 5250
[15]  Cheng S A, Logan B. Electrochem Commun, 2007, 9: 492
[16]  Wang Q, Huang L P, Yu H T, Quan X, Chen G H. Acta Phys-Chim Sin, 2013, 29: 889
[17]  Watson V J, Nieto Delgado C, Logan B. Environ Sci Technol, 2013, 47: 6704
[18]  Figueiredo J L, Pereira M F R, Freitas M A, Orfao J M. Carbon, 1999, 37: 1379
[19]  Chen W M, Xin Q, Sun G Q, Wang Q, Mao Q, Su H D. J Power Sources, 2008, 180: 199
[20]  Yuan Y, Zhou S G, Tang J H. Environ Sci Technol, 2013, 47: 4911
[21]  Boehm H P, Diehl E, Heck W, Sappok R. Angew Chem Int Ed, 1964, 3: 669
[22]  Mansoorian H J, Mahvi A H, Jafari A J, Amin M M, Rajabizadeh A, Khanjani N. Enzyme Microb Technol, 2013, 52: 352
[23]  Bashyam R, Zelenay P. Nature, 2006, 443: 63
[24]  Rodrigues N P, Obirai J, Nyokong T, Bedioui F. Electroanalysis, 2005, 17: 186
[25]  Ding K Q, Cheng F M. Synth Metals, 2009, 159: 2122
[26]  Le Leuch L M, Bandosz T J. Carbon, 2007, 45: 568
[27]  Tricas N, Borros S. Kgk-Kautschuk Gummi Kunststoffe, 2005, 58: 511
[28]  Kinoshita H, Nakayama T, Matsumoto N, Ohmae N. Carbon, 2011, 49: 3388
[29]  Plomp A J, Su D S, de Jong K P, Bitter J H. J Phys Chem C, 2009, 113: 9865
[30]  Jansen R J J, Bekkum H. Carbon, 1995, 33: 1021

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