- 質子交換膜燃料電池堆(碳中和交通出版工程·氫能燃料電池動力系統(tǒng)系列)
- 明平文 李冰編著
- 1195字
- 2024-05-17 10:12:03
參考文獻
[1]李天涯.質子交換膜燃料電池氣體擴散層的制備和性能研究[D].北京:北京化工大學,2021.
[2]LEE R.The outlook for population growth[J].Science,2011,333(6042):569-573.
[3]DEBE M K.Electrocatalyst approaches and challenges for automotive fuel cells[J].Nature,2012,486(7401):43-51.
[4]GROVE W R.ESQ M A.On voltaic series and the combination of gases by platinum[J].The London,Edinburgh,and Dublin Philosophical Magazine and Journal of Science,1839,14(86-87):127-130.
[5]SCH?NBEIN C F.On the voltaic polarization of certain solid and fluid substances:To the editors of the Philosophical Magazine and Journal[J].The London,Edinburgh,and Dublin Philosophical Magazine and Journal of Science,1839,14(85):43-45.
[6]MOND L,LANGER C A new form of gas battery[J].Proc R Soc London,1890,46(280-285):296-304.
[7]SERFASS J,GLENN D.Fuel cell commercialization—beyond the‘Notice of Market Opportu nity for Fuel Cells’(NOMO)[J].Journal of Power Sources,1992,37(1-2):63-74.
[8]CAMARA E,SCHORA F.MC Power commercialization program for MCFC power plants[J].Journal of Power Sources,1992,37(1-2):165-168.
[9]HAILE S M.Fuel cell materials and components[J].Acta Mater,2003,51(19):5981-6000.
[10]PARK C H,LEE C H,GUIVER M D,et al.Sulfonated hydrocarbon membranes for mediumtemperature and low-humidity proton exchange membrane fuel cells(PEMFCs)[J].Prog Polym Sci,2011,36(11):1443-1498.
[11]STEELE B C.Material science and engineering:the enabling technology for the commercialisation of fuel cell systems[J].Journal of Materials Science,2001,36:1053-1068.
[12]HANNAN M,HOQUE M M,MOHAMED A,et al.Review of energy storage systems for electric vehicle applications:Issues and challenges[J].Renewable and Sustainable Energy Reviews,2017,69:771-789.
[13]BANERJEE S,CURTIN D E.Nafion? perfluorinated membranes in fuel cells[J].J Fluorine Chem,2004,125(8):1211-1216.
[14]侯明,衣寶廉.燃料電池技術發(fā)展現(xiàn)狀與展望[J].電化學,2012,18(1):1-13.
[15]侯明,俞紅梅,衣寶廉.車用燃料電池技術的現(xiàn)狀與研究熱點[J].化學進展,2009,21(11):2319-2332.
[16]王誠,王樹博,張劍波,等.車用質子交換膜燃料電池材料部件[J].化學進展,2015,27(Z1):310-320.
[17]PROMISLOW K,WETTON B.PEM fuel cells:a mathematical overview[J].SIAM Journal on Applied Mathematics,2009,70(2):369-409.
[18]LUCIA U.Overview on fuel cells[J].Renewable and Sustainable Energy Reviews,2014,30:164-169.
[19]俞紅梅,衣寶廉.車用燃料電池現(xiàn)狀與電催化[J].中國科學:化學,2012,42(4):480-494.
[20]吳金鋒.質子交換膜燃料電池電流密度分布的研究[D].大連:中國科學院研究生院(大連化學物理研究所),2004.
[21]舒婷.燃料電池低鉑載量膜電極制備新技術的探索及其研究[D].廣州:華南理工大學,2013.
[22]汪嘉澍,潘國順,郭丹.質子交換膜燃料電池膜電極組催化層結構[J].化學進展,2012,24(10):1906-1914.
[23]王開麗.基于Pt基納米線的催化層構筑及其質子交換膜燃料電池性能研究[D].天津:天津理工大學,2022.
[24]LIU C-Y,SUNG C-C.A review of the performance and analysis of proton exchange membrane fuel cell membrane electrode assemblies[J].Journal of Power Sources,2012,220:348-353.
[25]夏高強.質子交換膜燃料電池膜電極及催化劑的研究[D].天津:天津大學,2014.
[26]堯松.質子交換膜燃料電池系統(tǒng)的輸出特性建模及其應用[D].成都:電子科技大學,2020.
[27]CORBO P,MIGLIARDINI F,VENERI O.Hydrogen fuel cells for road vehicles[M].Berlin:Springer Science&Business Media,2011.
[28]SAMMES N.Fuel cell technology: reaching towards commercialization[M].Berlin: Springer Science&Business Media,2006.
[29]姚帥,王洪建,程健,等.質子交換膜燃料電池系統(tǒng)運行特性[J].熱力發(fā)電,2018,47(7):10-15.
[30]馬睿.基于實時仿真的多物理域燃料電池模型和系統(tǒng)測試[D].西安:西北工業(yè)大學,2019.
[31]張智明,胡淞,李昆朋,等.PEMFC密封膠接觸壓力的均勻性研究及改善方法[J].湖南大學學報(自然科學版),2018,45(10):30-37.
[32]王茁,曹婷婷,曲英雪,等.燃料電池電堆設計開發(fā)關鍵技術[J].汽車文摘,2020,537(10):57-62.
[33]HERMANN A,CHAUDHURI T,SPAGNOL P.Bipolar plates for PEM fuel cells:A review[J].International journal of hydrogen Energy,2005,30(12):1297-1302.
[34]SCHULZE M,KN?RI T,SCHNEIDER A,et al.Degradation of sealings for PEFC test cells during fuel cell operation[J].Journal of Power Sources,2004,127(1-2):222-229.
[35]GARCíA-SALABERRI P A,VERA M,ZAERA R.Nonlinear orthotropic model of the inhomogeneous assembly compression of PEM fuel cell gas diffusion layers[J].International Journal of Hydrogen Energy,2011,36(18):11856-11870.
[36]TANG Y,KARLSSON A M,SANTARE M H,et al.An experimental investigation of humidity and temperature effects on the mechanical properties of perfluorosulfonic acid membrane[J].Materials Science and Engineering:A,2006,425(1-2):297-304.
[37]肖文靈.燃料電池密封結構優(yōu)化設計與性能分析[D].大連:大連理工大學,2020.