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Recent Advances in Experimental Measurements of Mixed-Gas Three-Phase Hydrate Equilibria for Gas Mixture Separation and Energy-Related Applications

机译:用于气体混合物分离和能量相关应用的混合气三相水合物平衡实验测量的最新进展

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Clathrate hydrates are currently studied extensively due to their involvement in important industrial processes. For certain industrial applications (e.g., flow assurance in oil/gas industry), they are considered a "nuisance" and their presence needs to be either suspended completely or adequately controlled. On the other hand, for other industrial applications (e.g., gas mixture separation, water desalination, and purification), hydrate formation is sought after, since it can facilitate the desired outcome. In either case, it is essential to have reliable values for the hydrate equilibrium conditions, in order to design appropriately the corresponding industrial applications. In the current study, we review the experimental studies that have reported three-phase hydrate equilibrium measurements. We focus primarily on studies that were published after the year 2008. Furthermore, we report only studies that examine the gas mixtures of two or more components. Of primary interest are gas mixtures that have significant industrial applications and include components such as carbon dioxide, nitrogen, hydrogen, methane, ethane, propane, hydrogen sulfide, and oxygen. The examined mixtures include at least one of the aforementioned gases. Of particular interest in this review are applications such as gas mixture separation (where hydrate promotion is desirable) and energy-related application such as flow assurance during oil/gas production and transportation (where hydrate inhibition is desirable). The mixtures that are included in the review are grouped under 15 gas mixture types. For most of the gas mixtures that are examined, the related industrial applications are identified and briefly discussed. In the current review, the different gas mixtures are also critically discussed and suggestions for possible future directions are presented regarding the examination of tentative additives to be used for promotion or inhibition.
机译:由于他们参与重要的工业流程,目前正在广泛研究包裹水合物。对于某些工业应用(例如,石油/天然气行业的流量保证),它们被认为是一种“滋扰”,并且它们的存在需要完全或充分控制。另一方面,对于其他工业应用(例如,气体混合物分离,水脱盐和纯化),寻求水合物形成,因为它可以促进所需的结果。在任何一种情况下,对于水合物平衡条件必须具有可靠的值,以便适当地设计相应的工业应用。在目前的研究中,我们回顾了报告了三相水合物平衡测量的实验研究。我们主要关注2008年后发表的研究。此外,我们仅报告了检查两种或更多种成分的气体混合物的研究。主要兴趣是具有重要产业应用的气体混合物,包括二氧化碳,氮气,氢气,甲烷,乙烷,丙烷,硫化氢和氧等组分。所检查的混合物包括上述气体中的至少一种。特别涉及本综述是诸如气体混合物分离(其中水合物促进是理想的)和能量相关的应用,例如油/天然气生产和运输期间的流量保证(所需的水合物抑制)。审查中包含的混合物在15种气体混合物类型下进行分组。对于所检查的大部分气体混合物,识别和简要讨论相关的工业应用。在目前的评论中,不同的气体混合物也批判性地讨论,并且提出了未来可能的方向的建议,以考虑用于促进或抑制的试探性添加剂。

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