4.6 Article

Experimental study of methane hydrate generation characteristics in the presence of GO and Re-GO

期刊

RSC ADVANCES
卷 12, 期 14, 页码 8760-8770

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1ra09330d

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资金

  1. Key Scientific Research Project of Henan Province [21A470003]
  2. Key Laboratory of Low-grade Energy Utilization Technologies and Systems, Ministry of Education [LLEUTS-201916, LLEUTS-201915]
  3. Henan Yuanjiang Fund, Science and Technology Project of Hami City and Xinjiang Uygur Autonomous Region Talent Special Project

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This paper studies the promotion effects of graphene oxide (GO) and recovered graphene oxide (Re-GO) on methane hydrate in different systems. The results show that GO has excellent kinetic and thermodynamic promotion effects on CH4 hydrate generation. The research provides essential data and an experimental basis for the application of graphene oxide and hydrate technology in energy storage and cold storage.
The industrial application of hydrate technology is greatly hindered by its slow generation rate, low gas storage rate, harsh generation conditions, and poor environmental friendliness of traditional additives. In this paper, the kinetic and thermodynamic promotion effects of graphene oxide (GO) and recovered graphene oxide (Re-GO) on methane hydrate in different systems were studied by the constant volume methods. The promotion mechanism was analyzed from the micro perspectives of molecular physical properties, interfacial reaction, and nucleation sites. It is found that GO has an excellent kinetic and thermodynamic promotion effect on CH4 hydrate generation. After the recovery process, the thermodynamic effect of Re-GO is basically unchanged, and the kinetic promotion effect is slightly reduced. Furthermore, it is verified that the GO material itself does not have a memory effect in hydrate formation. The results show that GO is an excellent accelerator of CH4 hydrate formation with high recovery value, which provides essential data and an experimental basis for the research and application of graphene oxide and hydrate technology in energy storage and cold storage.

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