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Phase equilibria, kinetics and morphology of methane hydrate inhibited by antifreeze proteins: application of a novel 3-in-1 method

机译:抗冻蛋白抑制甲烷水合物的相平衡,动力学和形态:一种新型3-in-1方法的应用

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The action of three distinct recombinant antifreeze proteins (AFPs) as methane hydrate inhibitors was examined using a recently-developed reactor. Compared with traditional approaches, this reactor uses minimal reactant volumes and short experimentation times to assess phase equilibria, kinetics and morphology of a hydrate system in a single experiment (3-in-1). Two of the recombinant AFPs are considered highly active with respect to the inhibition of ice: 'Maxi', a fish AFP, and a beetle AFP (TmAFP). The third protein from a grass, is classified as a low activity AFP (LpAFP). 'Maxi', an AFP that has not been tested previously as a hydrate inhibitor, slowed hydrate growth rates up to an order of magnitude compared to pure water. TmAFP and LpAFP also exhibited kinetic inhibition, but were less effective than ` Maxi'. In the presence of AFPs, hydrate films were thinner and showed a single growth mechanism compared to multiple crystal growth mechanisms observed in control experiments. The addition of TmAFP generated large irregular hydrate halos that propagated outside the original water boundary. Halo propagation was somewhat less prominent with LpAFP, and was not observed with 'Maxi'. Although, none of the AFP's showed thermodynamic inhibition properties, 'Maxi' appeared to form clusters of hydrate which remained metastable in the liquid-vapour region. (C) 2017 Elsevier Ltd.
机译:使用最近开发的反应器检查三种不同重组抗冻蛋白(AFP)作为甲烷水合物抑制剂的作用。与传统方法相比,该反应器采用最小的反应体积和短暂的实验时间来评估单一实验(3合1)中水合物系统的相平衡,动力学和形态。关于冰的抑制:'Maxi',鱼AFP和甲虫AFP(TMAFP)的抑制,两种重组AFP被认为是高活性的。来自草的第三种蛋白质,被归类为低活性AFP(LPAFP)。 “Maxi”,以前作为水合物抑制剂测试的AFP,与纯水相比,水合物生长速率降低到幅度上的数量级。 TMAFP和LPAFP还表现出动力学抑制,但比“MAXI”更低。在AFP的存在下,与在对照实验中观察到的多晶生长机制相比,水合物膜较薄并显示出单一生长机制。添加TMAFP产生的大不规则水合物晕,其在原始水边界外传播。 Halo繁殖与LPAFP有些不太突出,并没有观察到“Maxi”。虽然,AFP的任何AFP都显示出热力学抑制性能,“MAXI”似乎形成了液体 - 蒸气区域中保持稳定的水合物簇。 (c)2017年elestvier有限公司

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