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21世纪的洁净新能源——氢能 被引量:2

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作者 周善元
出处 《江西能源》 2000年第3期11-12,7,共3页 Jiangxi Energy
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同被引文献28

  • 1Alves J J, Towler G P. Analysis of refinery hydrogen distribution systems[J]. IndEngChem Res, 2002, 41 (23):5759-5769.
  • 2EI-Halwagi M M, Gabriel F, Harell D. Rigorous graphical targeting for resource conservation via material recycle/reuse networks[J]. IndEngChem Res, 2003, 42(19):4319-4328.
  • 3Zhao Z, Liu G, Feng X. New graphical method for the integration of hydrogen distribution systems[J], lndEngChem Res, 2006, 45(19):6512-6517.
  • 4Agrawal V, Shenoy U V. Unified conceptual approach to targeting and design of water and hydrogen networks[J]. AIChE Journal, 2006, 52(3), 1071-1082.
  • 5Bandyopadhyay S. Source composite curve for waste reduction[J]. ChemEng J, 2006, 125(2):99-110.
  • 6Zhang Q, Feng X, Liu G L, et al. A novel graphical method for the integration of hydrogen distribution systems with purification reuse [J]. Chem Eng Sci, 2011, 66(4):797-809.
  • 7Zhang Q, Feng X, Chu K H. Evolutionary graphical approach for simultaneous targeting and design of resource conservation networks with multiple contaminants[J], lnd Eng Chem Res, 2013, 52:1309-1321.
  • 8Zhang Q, Liu G L, Feng X, et al. Hydrogen networks synthesis considering separation performance of purifiers[J]. Int J Hydrogen Energy, 2014, 39( 16):8357-8373.
  • 9Yang M B, Feng X, Chu K H, et al. Graphical method for integrating purification processes in hydrogen systems with constraints of flow rate and concentration[J]. Ind Eng Chem Res, 2014, 53(8):3246-3256.
  • 10Yang M, Feng X, Chu K H, et al. Graphical method for identifying the optimal purification process of hydrogen systems[J]. Energy, 2014, 73:829-37.

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