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首页> 外文期刊>Journal of natural gas science and engineering >Amino acids as kinetic inhibitors for tetrahydrofuran hydrate formation: Experimental study and kinetic modeling
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Amino acids as kinetic inhibitors for tetrahydrofuran hydrate formation: Experimental study and kinetic modeling

机译:氨基酸作为四氢呋喃水合物形成的动力学抑制剂:实验研究和动力学建模

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In this work, a series of natural amino acids which are environmentally friendly and biodegradable have been tested as hydrate crystal growth kinetics inhibitors for THF (tetrahydrofuran) hydrate formation. Also the thermodynamic natural path has been used for modeling of the hydrate formation rate in a constant volume process. The used amino acids consist of glycine and L-leucine at varying concentrations (0.05-1.5 wt%) and the experiments have been conducted in a batch reactor under atmospheric pressure, with and without the presence of acetone. Induction time and equilibrium temperature of hydrate formation have been measured and compared. Amino acids with lower hydrophobicity have been found to be better KHIs to delay nucleation and reduce growth. The results also have shown that glycine has better inhibition performance than L-leucine because of lower hydrophobicity. While, it has been known when acetone is present, inhibition performance of amino acids improves and L-Ieucine is also more suitable than glycine, because of its nonpolar side chain and insolubility in acetone. The results of modeling show that there is good agreement between model prediction and experimental data with average error of 0.9% and this model can well predict constant volume experimental data of THF hydrate formation in the presence of amino acids. (C) 2014 Elsevier B.V. All rights reserved.
机译:在这项工作中,已经测试了一系列对环境友好且可生物降解的天然氨基酸,作为四氢呋喃(THF)水合物形成的水合物晶体生长动力学抑制剂。热力学自然路径也已经用于在恒定体积过程中模拟水合物形成速率。所使用的氨基酸由不同浓度(0.05-1.5 wt%)的甘氨酸和L-亮氨酸组成,并且实验是在间歇反应器中在大气压下在有或没有丙酮存在下进行的。测量并比较了水合物形成的诱导时间和平衡温度。已经发现具有较低疏水性的氨基酸是更好的KHI,可以延迟成核并减少生长。结果还表明,由于较低的疏水性,甘氨酸比L-亮氨酸具有更好的抑制性能。同时,已知当存在丙酮时,氨基酸的抑制性能提高,并且由于其非极性侧链和在丙酮中的不溶性,因此L-Ieucine比甘氨酸也更合适。建模结果表明,模型预测与实验数据吻合良好,平均误差为0.9%,该模型可以很好地预测氨基酸存在下THF水合物形成的恒定体积实验数据。 (C)2014 Elsevier B.V.保留所有权利。

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