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首页> 外文期刊>International Journal of Greenhouse Gas Control >Kinetic of formation for single carbon dioxide and mixed carbon dioxide and tetrahydrofuran hydrates in water and sodium chloride aqueous solution
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Kinetic of formation for single carbon dioxide and mixed carbon dioxide and tetrahydrofuran hydrates in water and sodium chloride aqueous solution

机译:水和氯化钠水溶液中单一二氧化碳以及二氧化碳和四氢呋喃混合水合物的形成动力学

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A laboratory-scale reactor system is built and operated to measure the kinetic of formation for single and mixed carbon dioxide-tetrahydrofuran hydrates. The T-cycle method, which is used to collect the kinetic data, is briefly discussed. For single carbon dioxide hydrate, the induction time decreases with the increase of the initial carbon dioxide pressure up to 2.96 MPa. Beyond this pressure, the induction time is becoming relatively constant with the increase of initial carbon dioxide pressure indicating that the liquid phase is completely supersaturated with carbon dioxide. Experimental results show that the inclusion of tetrahydrofuran reduces the induction time required for hydrate formation. These observations indicate hydrate nucleation process and onset growth are more readily to occur in the presence of tetrahydrofuran. In contrast, the presence of sodium chloride prolongs the induction time due to clustering of water molecules with the ions and the salting-out effects. It is also shown that the degree of subcooling required for hydrate formation is affected by the presence of tetrahydrofuran and sodium chloride in the hydrate forming system. The presence of tetrahydrofuran in the hydrate system significantly reduces the amount of carbon dioxide uptake. The apparent rate constant, k, for those systems are reported.
机译:建立并运行实验室规模的反应器系统,以测量单一和混合二氧化碳-四氢呋喃水合物的形成动力学。简要讨论了用于收集动力学数据的T循环方法。对于单一的二氧化碳水合物,诱导时间随着初始二氧化碳压力的增加而降低,直至2.96 MPa。超过该压力,诱导时间随着初始二氧化碳压力的增加而变得相对恒定,表明液相完全被二氧化碳过饱和。实验结果表明,四氢呋喃的加入减少了水合物形成所需的诱导时间。这些观察结果表明在四氢呋喃存在下,水合物成核过程和起始生长更容易发生。相反,由于水分子与离子的聚集和盐析作用,氯化钠的存在会延长诱导时间。还显示出水合物形成所需的过冷度受水合物形成系统中四氢呋喃和氯化钠的存在的影响。水合物系统中四氢呋喃的存在显着降低了二氧化碳的吸收量。报告了这些系统的表观速率常数k。

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