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Influence of Low-Dosage Hydrate Inhibitors on Methane Clathrate Hydrate Formation and Dissociation Kinetics

机译:低剂量水合物抑制剂对甲烷包合物水合物形成和离解动力学的影响

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摘要

This work investigates the effect of low-dosage hydrate inhibitors (LDHIs) on methane hydrate formation and dissociation. The hydrate inhibitors used in this study were the sodium salt of polyacrylic acid, a polysaccharide chitosan, and the linear sulfated polysaccharide i-carrageenan; the inhibiting behavior of these additives were compared with that of the commonly used hydrate inhibitor polyvinylpyrrolidone for methane hydrate formation. A LDHI concentration of 1wt% was found to increase the induction time relative to that at a LDHI concentration of 0.1wt%. Chitosan was found to be better than the others in reducing nucleation and the growth rate of the hydrate at a concentration of 1wt%. At a lower concentration of 0.1wt%, nucleation inhibition was minimal, however, growth inhibition was significant. The effect of these inhibitors on the decomposition rate of the hydrate was also studied, and the decomposition kinetics at a constant driving force in excess of three-phase equilibrium is reported.
机译:这项工作研究了低剂量水合物抑制剂(LDHIs)对甲烷水合物形成和离解的影响。本研究中使用的水合物抑制剂是聚丙烯酸的钠盐,多糖壳聚糖和线性硫酸化的多糖i-角叉菜胶。比较了这些添加剂与常用水合物抑制剂聚乙烯吡咯烷酮对甲烷水合物形成的抑制行为。相对于0.1wt%的LDHI浓度,发现1wt%的LDHI浓度增加了诱导时间。发现壳聚糖在减少成核和浓度为1wt%的水合物的生长速率方面优于其他壳聚糖。在0.1wt%的较低浓度下,成核抑制作用最小,然而,生长抑制作用显着。还研究了这些抑制剂对水合物分解速率的影响,并报道了在恒定驱动力下超过三相平衡的分解动力学。

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