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水合物法分離氣體的促進劑及促進機理研究進展

Research progress of promoters and promoting mechanisms for hydrate-based gas separation

  • 摘要: 目前添加促進劑后水合物形成機理并無統一定論,本文詳細闡述了氣體水合物形成的降低表面張力理論、臨界膠束理論、毛細效應理論、模板效應理論和表面疏水效應理論等促進機理,綜述了傳統促進劑(THF、CP、SDS)、生物環保型促進劑(氨基酸、淀粉),尤其是離子液體在氣體水合物形成相平衡實驗、動力學規律和促進機理方面的應用研究進展,闡述了離子液體半籠型水合促進劑在混合氣體分離方面的研究現狀,指出應從促進劑結構性質及其在水相中的聚集形態入手,研究促進劑?氣體?水之間的分子間作用力,建立各類氣體水合物促進劑的篩選體系。

     

    Abstract: Unconventional natural gas is a type of high-quality clean energy, which often contains some gases as impurities that cause reductions in its combustion heat value and utilization efficiency. Therefore, developing gas separation technologies to remove or separate these impurity gases and concentrate methane content is necessary. As a newly emerging gas separation technology, hydrate-based gas separation technology currently requires exploration on ways to greatly increase hydration rate to promote its industrial application. Screening green and environmentally-friendly promoters has become a research hotspot in recent decades. Amino acids, starch, and other biological substances have attracted much attention owing to their wide accessibility and environmental protection. Ionic liquids (ILs), which are a new type of lowly volatile and recyclable solvents, exhibit excellent performance in promoting gas hydrates formation and growth. Furthermore, ILs exhibit adjustable and controllable structures, which make them potential promoters in hydrate-based gas separation. Presently, no universally recognized theory on hydrate formation mechanism exists for various promoters. In this paper, different promotion mechanisms of gas hydration were described and discussed in detail, which included surface tension reduction theory, critical micelle theory, capillary effect theory, template effect theory, and surface hydrophobic effect theory. Both traditional promoters (e.g., THF, CP, and SDS) and bio-environmental promoters (e.g., amino acids and starch) were reviewed in the terms of gas hydration equilibrium condition, dynamic regularity, and hydrates-acceleration mechanisms. Particularly, the application of ILs, which are a type of semi-clathrate promoter, in gas hydration was elaborated. Study on the structural properties of promoters, their aggregation morphology in water, and intermolecular interactions between ILs, gases, and water is necessary for the establishment of a promoter-screening system for various gas hydrations.

     

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