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008 130819t2013 nyua f 001 0 eng d
020 _a9781461457848
039 9 _a201406091046
_bsaini
_y201308191148
_zida
040 _aUMP
090 _aTK2931 .F84 2013
245 0 0 _aFuel cells :
_bselected entries from the Encyclopedia of sustainability science and technology /
_cKlaus-Dieter Kreuer, editor
260 _aNew York :
_bSpringer,
_c2013
300 _avi, 801. p :
_bill. (some col.) ;
_c24 cm.
505 0 _aCh. 1. Fuel cells, introduction -- Ch. 2. Alkaline membrane fuel cells -- Ch. 3. Direct hydrocarbon solid oxide fuel cells -- Ch. 4. Fuel cell comparison to alternate technologies -- Ch. 5. Fuel cell types and their electrochemistry -- Ch. 6. Fuel cells (SOFC): Alternative approaches (electroytes, electrodes, fuels) -- Ch. 7. Membrane electrolytes, from perfluoro sulfonic acid (PFSA) to hydrocarbon ionomers -- Ch. 8. Molten carbonate fuel cells -- Ch. 9. PEM fuel cell materials: Costs, performance and durability -- Ch. 10. PEM fuel cells and platinum-based electrocatalysts -- Ch. 11. PEM fuel cells, materials and design development challenges -- Ch. 12. Phosphoric acid fuel cells for stationary applications -- Ch. 13. Polybenzimidazole fule cell technology -- Ch. 14. Polymer electrolyte (PE) fuel cell systems -- Ch. 15. Polymer electrolyte membrane (PEM) fuel cells, automotive applications -- Ch. 16. Polymer electrolyte membrane fuel cells (PEM-FC) and non-noble metal catalysts for oxygen reduction -- Ch. 17. Proton exchange membrane fuel cells:High-temperature, low-humidity operation -- Ch. 18. Solid oxide fuel cell materials: Durability, reliability and cost -- Ch. 19. Solid oxide fuel cells -- Ch. 20. Solid oxide fuel cells, marketing issues -- Ch. 21. Solid oxide fuel cells, sustainability aspects
650 0 _aFuel cells
700 1 _aKreuer, K.-D
999 _aVIRTUA40
_c74263
_d74269
999 _aVTLSSORT0080*0200*0400*0900*2450*2600*3000*5050*6500*7000*9992