Thermodynamic Stability of Structure H Hydrates Based on the Molecular Properties of Large Guest Molecules

Article, Other literature type English OPEN
Kyoichi Tezuka; Tatsuhiko Taguchi; Saman Alavi; Amadeu K. Sum; Ryo Ohmura;
  • Publisher: MDPI AG
  • Journal: Energies,volume 5,issue 2 2,pages1-7 (issn: 1996-1073)
  • Publisher copyright policies & self-archiving
  • Related identifiers: doi: 10.3390/en5020459
  • Subject: phase equilibria | Technology | T | structure H | molecular properties | clathrate hydrate; structure H; phase equilibria; molecular properties | clathrate hydrate
    • jel: jel:Q0 | jel:Q | jel:Q4 | jel:Q47 | jel:Q49 | jel:Q48 | jel:Q43 | jel:Q42 | jel:Q41 | jel:Q40
    mesheuropmc: macromolecular substances

This paper report analyses of thermodynamic stability of structure-H clathrate hydrates formed with methane and large guest molecules in terms of their gas phase molecular sizes and molar masses for the selection of a large guest molecule providing better hydrate stabil... View more
  • References (20)
    20 references, page 1 of 2

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    8. Mehta, A.P.; Sloan, E.D. Structure H hydrate phase equilibria of methane + liquid hydrocarbon mixtures. J. Chem. Eng. Data 1993, 38, 580-582.

    9. Ohmura, R.; Uchida, T.; Takeya, S.; Nagao, J.; Minagawa, H.; Ebinuma, T.; Narita, H. Phase equilibrium for structure-H hydrates formed with methane and either pinacolone (3,3-dimethyl-2-butanone) or pinacolyl alcohol (3,3-dimethyl-2-butanol). J. Chem. Eng. Data 2004, 48, 1337-1340.

    10. Mehta, A.P.; Sloan, E.D. Structure H hydrate phase equilibria of paraffins naphthenes, and olefins with methane. J. Chem. Eng. Data 1994, 39, 887-890.

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