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Clathrate Hydrates of Greenhouse Gases in the Presence of Natural Amino Acids: Storage Transportation and Separation Applications

机译:天然氨基酸存在下温室气体的笼形水合物:储存运输和分离应用

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摘要

Storage of greenhouse gases in the form of gas hydrates is attractive and is being pursued rigorously in recent times. However, slow formation rate and inefficient water to hydrate conversion are the main hindering factors. In this report, we examine the role of two amino acids (0.5 wt%), l-methionine (l-met) and l-phenylalanine (l-phe) on the formation of gas hydrates using methane (CH4), carbon dioxide (CO2) and their mixtures as guest molecules. Experiments are conducted under non-stirred and isochoric configurations. The hydrate conversion efficiency of both amino acids is identical for hydrates formed with CH4 and mixture of (CO2+CH4). However, the hydrate conversion is significantly less in CO2 hydrates in l-phe system. Addition of amino acids to the water dramatically improved the kinetics of hydrate formation and 90% of maximum gas uptake in hydrate phase occurred in less than an hour. The water to hydrate conversion is also very efficient (>85%) in the presence of amino acids. Therefore, the amino acids containing systems are suitable for storing both CH4 and CO2 gases. The gas hydrates were characterised using powder x-ray diffraction (XRD) and Raman spectroscopic measurements. These measurements indicate the formation of sI hydrates and encasing of gas molecules as guests.
机译:气体水合物形式的温室气体的存储是有吸引力的,并且近年来正在严格地进行。然而,缓慢的形成速率和无效的水到水合物转化是主要的阻碍因素。在本报告中,我们研究了两种氨基酸(0.5%(重量)),L-蛋氨酸(L-met)和L-苯丙氨酸(L-phe)在使用甲烷(CH4),二氧化碳( CO2)及其混合物作为客体分子。实验在非搅拌和等速配置下进行。对于与CH4和(CO2 + CH4)混合物形成的水合物,两种氨基酸的水合物转化效率均相同。但是,在l-phe系统中,CO2水合物中的水合物转化率明显较低。向水中添加氨基酸极大地改善了水合物形成的动力学,水合相中最大气体吸收量的90%在不到一个小时内发生。在氨基酸存在下,水到水合物的转化也非常有效(> 85%)。因此,含氨基酸的系统适用于存储CH4和CO2气体。使用粉末X射线衍射(XRD)和拉曼光谱测量来表征气体水合物。这些测量表明sI水合物的形成和气体分子作为客体的包裹。

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