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Pectin as an Extraordinary Natural Kinetic Hydrate Inhibitor

机译:果胶作为一种特殊的天然动力学水合物抑制剂

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摘要

Pectin as a novel natural kinetic hydrate inhibitor, expected to be eco-friendly and sufficiently biodegradable, was studied in this paper. The novel crystal growth inhibition (CGI) and standard induction time methods were used to evaluate its effect as hydrate inhibitor. It could successfully inhibit methane hydrate formation at subcooling temperature up to 12.5 °C and dramatically slowed the hydrate crystal growth. The dosage of pectin decreased by 66% and effective time extended 10 times than typical kinetic inhibitor. Besides, its maximum growth rate was no more than 2.0%/h, which was far less than 5.5%/h of growth rate for PVCap at the same dosage. The most prominent feature was that it totally inhibited methane hydrate crystal rapid growth when hydrate crystalline occurred. Moreover, in terms of typical natural inhibitors, the inhibition activity of pectin increased 10.0-fold in induction time and 2.5-fold in subcooling temperature. The extraordinary inhibition activity is closely related to its hydrogen bonding interaction with water molecules and the hydrophilic structure. Finally, the biodegradability and economical efficiency of pectin were also taken into consideration. The results showed the biodegradability improved 75.0% and the cost reduced by more than 73.3% compared to typical commercial kinetic inhibitors.
机译:本文研究了果胶作为一种新型的天然动力学水合物抑制剂,有望实现生态友好和可生物降解性。新颖的晶体生长抑制(CGI)和标准的诱导时间方法被用来评估其作为水合物抑制剂的效果。它可以在高达12.5 C的过冷温度下成功抑制甲烷水合物的形成,并显着减缓水合物晶体的生长。果胶的用量比典型的动力学抑制剂减少了66%,有效时间延长了10倍。此外,其最大生长速率不超过2.0%/ h,远低于相同剂量PVCap的生长速率的5.5%/ h。最显着的特征是,当水合物晶体出现时,它完全抑制了甲烷水合物晶体的快速生长。而且,就典型的天然抑制剂而言,果胶的抑制活性在诱导时间上增加了10.0倍,在过冷温度下增加了2.5倍。非凡的抑制活性与其与水分子的氢键相互作用和亲水结构密切相关。最后,还考虑了果胶的生物降解性和经济性。结果表明,与典型的商业动力学抑制剂相比,生物降解性提高了75.0%,成本降低了73.3%以上。

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