首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Multicomponent Vapor-Liquid Equilibrium Measurement and Modeling of Ethylene Glycol, Water, and Natural Gas Mixtures at 6 and 12.5 MPa
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Multicomponent Vapor-Liquid Equilibrium Measurement and Modeling of Ethylene Glycol, Water, and Natural Gas Mixtures at 6 and 12.5 MPa

机译:多组分蒸汽 - 液体平衡测量和乙二醇,水和天然气混合物在6和12.5MPa下的型号

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摘要

High pressure subsea natural gas dehydration (NGD) units using ethylene glycol (MEG) absorption have been proposed. To expand the experimental database and assist design qualification, new vapor-liquid equilibrium (VLE) experimental data have been measured for a 20-component glycol-water-natural gas mixture at T = (288-323) K, p = (6.0, 12.5) MPa, and w(MEG,feed) = (90, 99.8) %. MEG, H2O, CO2, N-2, and alkane (methane to n- and i-pentane) phase distributions have been quantified. Experimental uncertainty ranges from +/- 2-42%, with the greatest uncertainty for the quantification of trace components. Experimental results are modeled using the Cubic-Plus-Association (CPA) equation of state. Overpredictions (similar to 9%) are observed for the water content of the vapor phase. CO2 is shown to have a large effect on y(MEG), leading to modeling deviations in the order of 65%. A relatively accurate prediction of the natural gas partition coefficients was observed for major components C-1-C-3 and CO2, with modeling errors ranging from 5% for methane to 10% for CO2. More significant deviations were observed for trace components, with the largest deviation of 73% N-2. The CPA model provides both satisfactory and conservative results suitable for use in NGD process designs. On the basis of this work, operation at subsea conditions would significantly improve dehydration capability.
机译:已经提出了使用乙二醇(MEG)吸收的高压海面天然气脱水(NGD)单元。为了扩展实验数据库和辅助设计资格,在T =(288-323)K,P =(6.0,6.0,6.0,)中,已经测量了新的蒸汽 - 液平衡(VLE)实验数据。在T =(288-323)K,P =(6.0,)中测量了20-组分二醇 - 水 - 天然气混合物。(6.0, 12.5)MPa和W(MEG,Feed)=(90,& 99.8)%。已经量化了Meg,H 2 O,CO 2,N-2和烷烃(甲烷和N-和I-戊烷)相分布。实验不确定性从+/- 2-42%的范围,最大的不确定度用于量化组件的量化。使用立方和协会(CPA)状态的建模实验结果。对于气相的水含量,观察到过度注释(类似于9%)。 CO2显示对Y(MEG)具有很大的影响,导致偏差为65%。对于主要成分C-1-C-3和CO 2,观察到对天然气分配系数的相对准确的预测,其含量为甲烷的5%至10%的模拟误差。观察到痕量组分的更大偏差,最大偏差为73%N-2。 CPA模型提供了适用于NGD工艺设计的令人满意和保守的结果。在这项工作的基础上,海底条件的操作将显着提高脱水能力。

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