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Experimental Measurement of Methane and Ethane Mole Fractions during Gas Hydrate Formation

机译:水合物形成过程中甲烷和乙烷分子馏分的实验测量

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The Super-saturation condition has to be provided to form gas hydrates. Consequently, the prediction of the guest molecule fraction in the aqueous phase is crucial in the study of the gas hydrate kinetics. In the present work, several experiments were carried out in a semi-batch reactor in order to determine the mole fraction of methane and ethane during gas hydrates formation (growth stage). The temperature ranged from 274.15 to 284.15 K. The experiment pressure ranges were 3100 to 7765 kPa and 950 to 2635 kPa for methane and ethane, respectively. The mole fraction is proportional to pressure while it is not affected by temperature to a great extent. Furthermore, the amount of guest dissolved in the liquid water was observed in the aqueous phase which was fairly constant during hydrates formation.
机译:必须提供过饱和条件以形成气体水合物。因此,在水合物动力学研究中,预测水相中客体分子分数至关重要。在目前的工作中,在半间歇式反应器中进行了一些实验,以确定在天然气水合物形成(生长阶段)过程中甲烷和乙烷的摩尔分数。温度范围为274.15至284.15K。甲烷和乙烷的实验压力范围分别为3100至7765 kPa和950至2635 kPa。摩尔分数与压力成正比,而在很大程度上不受温度影响。此外,在水相中观察到溶解在液态水中的客体的量在水合物形成期间是相当恒定的。

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