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A Triethylene Glycol-Water System: A Study of the TEG Regeneration Processes in Natural Gas Dehydration Plants

机译:三乙二醇-水系统:天然气脱水厂中TEG再生过程的研究

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摘要

Natural gas pipeline transportation requires very low water content in the gas stream in order to avoid condensation or hydrate formation. To reach this goal, when triethylene glycol is used to dehydrate natural gas, after the absorption step, triethylene glycol must be regenerated to levels substantially above 98.5-99.0% by weight available from atmospheric distillation of glycol-water mixtures. In order to regenerate triethylene glycol to higher purity levels, some of the methods used require a stripping gas, a solvent, or to perform the distillation under vacuum. Another method to perform a further dehydration of triethylene glycol is the use of a water exhauster, known as Coldfinger, where the vapor in equilibrium with the liquid to be dehydrated is continuously condensed and removed. In the first part of this work, measurements of boiling temperatures are reported for binary mixtures of triethylene glycol and water at pressures of 50, 100, 200, and 400 mmHg. The experimental data obtained were correlated by employing the NRTL model, with temperature-dependent parameters, to express activities in the liquid phase. The fitted NRTL parameters were then used in the Hysys process simulator to perform a process simulation of a natural gas dehydration plant, provided both with a Coldfinger water exhauster and a conventional stripping column for triethylene glycol regeneration.
机译:天然气管道运输要求气流中的水含量非常低,以避免冷凝或形成水合物。为了达到该目标,当使用三甘醇使天然气脱水时,在吸收步骤之后,必须将三甘醇再生到实质上高于常压蒸馏的乙二醇-水混合物的98.5-99.0%(重量)的水平。为了将三甘醇再生至更高的纯度,使用的某些方法需要汽提气,溶剂或在真空下进行蒸馏。进行三甘醇进一步脱水的另一种方法是使用称为Coldfinger的抽水机,其中与要脱水的液体平衡的蒸气被连续冷凝并除去。在这项工作的第一部分中,报道了三甘醇和水的二元混合物在50、100、200和400 mmHg的压力下沸腾温度的测量结果。通过使用NRTL模型(与温度相关的参数)关联获得的实验数据,以表达液相中的活性。然后,将拟合的NRTL参数用于Hysys过程仿真器中,以对天然气脱水厂进行过程仿真,该设备配备了Coldfinger抽水机和常规的汽提塔,用于三甘醇的再生。

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