CO2 removal from air for alkaline fuel cells operating with liquid H2

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CO2 removal from air for alkaline fuel cells operating with liquid H2 ( co2-removal-from-air-alkaline-fuel-cells-operating-with-liqu )

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61. McCARTY,RD., HORD,J. and RODER,H.M.; Selected properties of hydrogen (Engineering Design Data), NBS Monograph 168, US Dept of CommercelNational Bureau of Standards, Washington, 1981 62. V AN den BROECK,H.; Personal communication, 14110/92 63. LOBO,W.E. and SKAPERDAS; Air purification in the reversing exchanger; Chemical Engineering Progress, vol.43, no.2, 1947, p69-74 64. TRUMPLER,P.R and DODGE,B.F.; The design of ribbon-packed exchangers for low temperature air separation plants; Chemical Engineering Progress, vol.43, no.2, 1947, p75-84 65. DENTON,W.H. and WARD,D.E.; Applications of plate-fin heat exchangers; British Chemical Engineering, vol.5, 1960, p18 66. KERN,D.Q; Process heat transfer; McGraw Hill, 1990 67. WEBB,RL.; Principles of enhanced heat transfer; John Wiley & Sons, New York, 1994 68. DENTON,W.H., SHAW,B. and WARD,D.E.; Purification of hydrogen for distillation; Trans Instn Chem Engrs, vo1.36, 1958, p179-200 69. CRAWFORD,D.B.; Elliot oxygen process and impurity removal system; Chem Eng Prog, vol.46, no.2, 1950, p74-78 70. McMAHON,H.O., BOWEN,RJ. & BEYLE Jr.,G.A.; A perforated plate heat exchanger; Trans ASME, vol.72, 1950, p623-632 rd 71. KA YS, W.M. and LONDON,A.L.; Compact heat exchangers, 3 ed.; McGraw Hill, New York, 1984 72. VENKA T ARA THNAM,G. and SARANGI,S.; Matrix heat exchangers and their applications in cryogenic systems; Cryogenics, vol.30, no.ll, 1990, p907-918 73. KROEGER,P.G.; Performance deterioration in high effectiveness heat exchangers due to axial conduction effects; Advances in Cryogenic Engineering, vol. 12, 1967, p363-372 74. BAHNKE,G.D. and HOWARD,C.P.; The effect of longitudinal heat conduction on periodic-flow heat exchanger performance; J. Engineering for Power, Trans ASME, vol.86-A, 1964, p105-119 75. FLEMING,RB.; The effect of flow distribution in parallel channels of counterflow heat exchangers; Advances in Cryogenic Engineering, vol.12, 1967, p352-362 76. BARRON,RF.; Effect of heat transfer from ambient on cryogenic heat exchanger performance; Advances in Cryogenic Engineering, vol.29, 1984, p265-272 77. CHOWDHURY,K. and SARANGI,S.; Performance of cryogenic heat exchangers with heat leak from the surroundings; Advances in Cryogenic Engineering, vol.29, 1984, 89

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