000 01910nam a22003857a 4500
003 OSt
005 20210730095625.0
008 210730b ||||| |||| 00| 0 eng d
010 _a 2011931448
015 _aGBB180344
_2bnb
016 7 _a015840973
_2Uk
020 _a9780123869364 (hbk.)
020 _a0123869366 (hbk.)
035 _a(OCoLC)ocn751829478
040 _aUKMGB
_beng
_cLC
_dCAUOI
_dMTG
_dUNL
_dYDXCP
_dDLC
042 _alccopycat
050 0 0 _aTK2931
_b.P648 2012
082 0 4 _a621.312429
_222
100 _aMench, Matthew M
245 0 0 _aPolymer electrolyte fuel cell degradation /
_c[edited by] Matthew M. Mench, Emin Caglan Kumbur, T. Nejat Veziroglu.
260 _aAmsterdam ;
_aBoston :
_bAcademic Press,
_c2012.
300 _axi, 460 p. :
_bill. ;
_c24 cm.
504 _aIncludes bibliographical references and index.
520 _aFor full market implementation of PEM fuel cells to become a reality, two main limiting technical issues must be overcome- cost and durability. This cutting-edge volume directly addresses the state-of-the-art advances in durability within every fuel cell stack component. [...] chapters on durability in the individual fuel cell components -- membranes, electrodes, diffusion media, and bipolar plates -- highlight specific degradation modes and mitigation strategies. The book also includes chapters which synthesize the component-related failure modes to examine experimental diagnostics, computational modeling, and laboratory protocol"--Back cover.
650 0 _aFuel cells.
650 0 _aFuel cells
_xReliability.
650 0 _aPolyelectrolytes.
700 1 _aMench, Matthew M.
700 1 _aKumbur, Emin Caglan.
700 1 _aVeziroğlu, T. Nejat.
906 _a7
_bcbc
_ccopycat
_d2
_encip
_f20
_gy-gencatlg
942 _2lcc
_cBK
999 _c9387
_d9387