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Influence of pressure on the formation process of CH_4 hydrate in porous media below the freezing point

机译:压力对冷冻点以下多孔介质中CH_4水合物形成过程的影响

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摘要

Natural gas hydrates are mainly stored in the pores of the sedimentary layer in permafrost regions, and the formation characters in porous media were particularly important for the exploitation and utilization of natural gas hydrates. So, it is essential to understand the formation process of methane hydrate in porous media below freezing point. In this study, the formation process of methane hydrate was studied in a closed system in porous media below freezing point. The results indicated that the initial pressure played an important role in the formation characteristics of methane hydrate in porous media below freezing point. The higher the initial pressure was, the larger the formation rate of methane hydrate. And the maximum formation rate attained 6.46 x 10~(-4) mol/h when the initial pressure was 9.0 MPa under the same temperature and particle size conditions. Furthermore, the final conversion rate was larger at higher initial pressure and the final conversion rate attained 56.5% at an initial pressure of 9.0 MPa. Furthermore, the pressure disturbance could improve the formation process of methane hydrate and the final conversion rate was larger to some extent. The relevant results will provide a theoretical reference for natural gas hydrates exploitation.
机译:天然气水合物主要储存在多年冻土区的沉积层的孔中,多孔介质中的形成性状对于自然气水合物的开采和利用尤为重要。因此,必须了解冻结点以下多孔介质中甲烷水合物的形成过程。在该研究中,在冻结点的多孔介质中的封闭系统中研究了甲烷水合物的形成过程。结果表明,初始压力在低于冷冻点的多孔介质中的甲烷水合物的形成特征中发挥着重要作用。初始压力越高,甲烷水合物的形成速率越大。当初始压力在相同温度和粒度条件下,最大形成速率达到6.46×10〜(-4)mol / h。此外,最终转化率在较高的初始压力下较大,最终转化率在9.0MPa的初始压力下达到56.5%。此外,压力扰动可以改善甲烷水合物的形成过程,最终转化率在一定程度上较大。相关结果将为天然气水合物剥削提供理论参考。

著录项

  • 来源
    《Environmental progress & sustainable energy》 |2021年第4期|e13601.1-e13601.8|共8页
  • 作者单位

    Western China Research Center of Energy & Environment Lanzhou University of Technology Lanzhou China Key Laboratory of Complementary Energy System of Biomass and Solar Energy Lanzhou China;

    Western China Research Center of Energy & Environment Lanzhou University of Technology Lanzhou China Key Laboratory of Complementary Energy System of Biomass and Solar Energy Lanzhou China;

    Western China Research Center of Energy & Environment Lanzhou University of Technology Lanzhou China State Key Laboratory of Frozen Soil Engineering Northwest Institute of Eco-Environment and Resources CAS Lanzhou China;

    Western China Research Center of Energy & Environment Lanzhou University of Technology Lanzhou China Key Laboratory of Complementary Energy System of Biomass and Solar Energy Lanzhou China;

    Western China Research Center of Energy & Environment Lanzhou University of Technology Lanzhou China Key Laboratory of Complementary Energy System of Biomass and Solar Energy Lanzhou China;

    Western China Research Center of Energy & Environment Lanzhou University of Technology Lanzhou China Key Laboratory of Complementary Energy System of Biomass and Solar Energy Lanzhou China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    formation characteristics; freezing point; methane hydrate; porous media; pressure disturbance;

    机译:形成特征;冰点;甲烷水合物;多孔介质;压力干扰;

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