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首页> 外文期刊>Fluid Phase Equilibria >Experiments and prediction of phase equilibrium conditions for methane hydrate formation in the NaCl, CaCl2, MgCl2 electrolyte solutions
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Experiments and prediction of phase equilibrium conditions for methane hydrate formation in the NaCl, CaCl2, MgCl2 electrolyte solutions

机译:NaCl,CaCl2,MgCl2电解质溶液中甲烷水合物形成相平衡条件的实验与预测

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Formation of gas hydrate cause a lot of problems for gas industry in the generation, transmission and processing which caused blockage in the equipment. One of the most common treatments is injection of electrolytes as chemical inhibitors. In this paper, hydrate formation conditions of methane gas in both water and NaCl, CaCl2, MgCl2 electrolyte solutions were measured and a new thermodynamic calculation method based on the original PR model and Chen-Guo model was proposed by introducing a water activity calculation equation. The comparison demonstrates that the inhibiting effect of MgCl2, NaCl, CaCl2 on the hydrate formation decrease respectively. The experimental results showed that the hydrate formation conditions are related to the electrolyte molecular mass and electrolyte concentration to a large extent, the deviation will increase as the temperature or the electrolyte concentration increases, so three parameters t(1), t(2), t(3) (0.034, 0.15, 0.01) which are related to temperature, concentration and molecular weight of electrolyte are introduced in the new calculation method. The absolute average deviation of 41 sets of data is 7.98 and 1.96 respectively before and after the correction parameters were introduced, the accuracy has more than quadrupled. (C) 2018 Elsevier B.V. All rights reserved.
机译:燃气水合物的形成对天然气行业产生了许多问题,在设备中堵塞的发电,传动和加工中。其中一种最常见的处理是作为化学抑制剂的电解质注射电解质。本文采用水和NaCl,CaCl2,MgCl2电解质溶液中甲烷气体的水合物形成条件,并通过引入水活性计算方程来提出基于原始PR模型和陈国模型的新的热力学计算方法。比较表明,MgCl2,NaCl,CaCl2对水合物形成的抑制作用分别降低。实验结果表明,水合物形成条件在很大程度上与电解质分子量和电解质浓度有关,随着温度或电解质浓度的增加,偏差将增加,因此三个参数T(1),T(2),在新的计算方法中引入了与电解质的温度,浓度和分子量相关的T(3)(0.034,0.15,0.01)。在引入校正参数之前和之后,41组数据的绝对平均偏差分别为7.98和1.96,精度超过四倍。 (c)2018 Elsevier B.v.保留所有权利。

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