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January 14, 2026Processes0 citationsOpen Access

Modeling of Methane + Propane Mixed-Gas Hydrate Formation Processes in a Batch-Type Reactor Under Isothermal Condition

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TTTakahiro TeraokaRSRen SugibuchiMOMotoi Oshima

Key Points

  • To model the formation processes of methane and propane mixed-gas hydrates in a batch reactor.
  • Developed two numerical models to simulate hydrate formation.
  • Compared models with experimental data for methane + propane system.
  • Analyzed thermodynamic and kinetic aspects of gas consumption and composition.
  • Identified propane enclathration rate as the rate-determining factor.
  • Showed that gas-phase composition evolves during crystal growth.
  • Demonstrated ability to calculate gas-phase changes over time.

Abstract

When mixed-gas hydrates are formed in a closed system, such as in a batch reactor, the gas-phase composition changes during formation due to a preferred enclathration of one of the guest molecules. To understand this complex process, we developed two numerical models that we compare to experimental data obtained for a methane + propane mixed-gas system. The models are thermodynamic yet include kinetic processes such as the gas-consumption and composition heterogeneity in the crystal. Because we can calculate the time evolution of the gas-phase composition during crystal growth, which is difficult to measure experimentally, we can show that the rate-determining process of methane + propane mixed-gas hydrate formation is the enclathration rate of propane.

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Cite This Study

Teraoka et al. (2026) studied this question.

synapsesocial.com/papers/6966f31d13bf7a6f02c00d60https://doi.org/10.3390/pr14020261
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