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Dissociation Rate of THF-methane Hydrates

机译:THF-甲烷水合物的解离速率

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A number of papers and research projects suggest that stranded natural gas can be transported in a solid hydrate state at higher temperatures or lower pressures compared to conventional transportation systems (LNG and CNG). The self-preservation effect of methane hydrate can probably be improved by the use of a third component besides CH_4 and water. Tetrahydrofuran (THF) is a promoter that greatly reduces the required formation pressures. In the present work the influence of THF on the decomposition kinetics of mixed THF-CH_4 hydrates was studied to evaluate the THF stabilization effect. The experimental work, carried out with the help of a reaction calorimeter, has revealed that the dissociation rate of mixed THF hydrates is lower (on average by one order of magnitude) than that of simple methane hydrates. Mixed hydrates can also be stored for short periods at temperatures over 0 deg C. However, the best preservation conditions (among the experimented ones) are realized at - 1deg C and 3 MPa. (about 66 days required for complete dissociation).
机译:许多论文和研究项目表明,与传统的运输系统(LNG和CNG)相比,滞留天然气可以在较高温度或较低压力下以固态水合物状态进行运输。甲烷水合物的自我保存作用可能可以通过使用CH_4和水以外的第三种成分来改善。四氢呋喃(THF)是促进剂,可大大降低所需的地层压力。在目前的工作中,研究了THF对混合的THF-CH_4水合物分解动力学的影响,以评估THF的稳定作用。在反应量热仪的帮助下进行的实验工作表明,混合的THF水合物的离解速率比简单的甲烷水合物低(平均降低一个数量级)。混合水合物也可以在超过0摄氏度的温度下短时间存储。但是,最佳的保存条件(在实验条件中)是在-1摄氏度和3 MPa下实现的。 (完全分离大约需要66天)。

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