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Experimental and modeling study of the phase behavior of synthetic crude oil + CO2

机译:合成原油+ CO2相行为的实验与模拟研究

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摘要

A full understanding of the phase behavior of CO2–hydrocarbon mixtures at reservoir conditions is essential for the proper design, construction and operation of carbon capture and storage (CCS) and enhanced oil recovery (EOR) processes. While equilibrium data for binary CO2–hydrocarbon mixtures are plentiful, equilibrium data and validated equations of state having reasonable predictive capability for multi-component CO2–hydrocarbon mixtures are limited. In this work, a new synthetic apparatus was constructed to measure the phase behavior of systems containing CO2 and multicomponent hydrocarbons at reservoir temperatures and pressures. The apparatus consisted of a thermostated variable-volume view cell driven by a computer-controlled servo motor system, and equipped with a sapphire window for visual observation. Two calibrated syringe pumps were used for quantitative fluid injection. The maximum operating pressure and temperature were 40 MPa and 473.15 K, respectively. The apparatus was validated by means of isothermal vapor–liquid equilibrium measurement on (CO2 + heptane), the results of which were found to be in good agreement with literature data. In this work, we report experimental measurements of the phase behavior and density of (CO2 + synthetic crude oil) mixtures. The ‘dead’ oil contained a total of 17 components including alkanes, branched-alkanes, cyclo-alkanes, and aromatics. Solution gas (0.81 methane + 0.13 ethane + 0.06 propane) was added to obtain live synthetic crudes with gas-oil ratios of either 58 or 160. Phase equilibrium and density measurements are reported for the ‘dead’ oil and the two ‘live’ oils under the addition of CO2. The measurements were carried out at temperatures of 298.15, 323.15, 373.15 and 423.15 K and at pressures up to 36 MPa, and included vapor–liquid, liquid–liquid and vapor–liquid–liquid equilibrium conditions. The results are qualitatively similar to published data for mixtures of CO2 with both real crude oils or and simple hydrocarbon mixtures containing both light and heavy components. The present experimental data have been compared with results calculated with two predictive models, PPR78 and PR2SRK, based on the Peng–Robinson 78 (PR78) and Soave–Redlich–Kwong (SRK) equations of state with group-contribution formulae for the binary interaction parameters. Careful attention was paid to the critical constants and acentric factor of high molar-mass components. Since the mixture also contained several light substances with critical temperatures below some or all experimental temperatures, we investigated the use of the Boston–Mathias modification of the PR78 and SRK equations. The results showed that these models can predict with reasonable accuracy the vapor–liquid equilibria of systems containing CO2 and complex hydrocarbon mixtures without the need to regress multiple binary parameters against experimental data.
机译:充分了解储层条件下的CO2碳氢化合物混合物的相态,对于碳捕集与封存(CCS)和提高采油率(EOR)工艺的正确设计,构造和运行至关重要。虽然二元CO2碳氢化合物混合物的平衡数据很多,但是平衡数据和对多组分CO2碳氢化合物混合物具有合理预测能力的有效状态方程是有限的。在这项工作中,构造了一种新的合成装置以在储层温度和压力下测量含二氧化碳和多组分碳氢化合物的系统的相态。该设备包括一个由计算机控制的伺服电机系统驱动的恒温可变体积的观察室,并配备了用于目视观察的蓝宝石窗口。两个校准的注射泵用于定量液体注射。最大工作压力和温度分别为40 MPa和473.15K。该仪器通过在(CO2 +庚烷)上进行等温气-液平衡测量而得到验证,其结果与文献数据相吻合。在这项工作中,我们报告了(CO2 +合成原油)混合物的相行为和密度的实验测量。 “死”油总共包含17种成分,包括烷烃,支链烷烃,环烷烃和芳烃。添加溶液气(0.81甲烷+ 0.13乙烷+ 0.06丙烷)以获得气油比为58或160的活性合成原油。报告了“死”油和两种“活”油的相平衡和密度测量结果。在添加二氧化碳的情况下。测量是在298.15、323.15、373.15和423.15 K的温度下以及最高36 MPa的压力下进行的,其中包括气-液,液-液和气-液-液平衡条件。该结果在质量上与已发布的数据有关,即二氧化碳与实际原油的混合物或含有轻组分和重组分的简单烃混合物的公开数据。目前的实验数据已与基于Peng-Robinson 78(PR78)和Soave-Redlich-Kwong(SRK)状态方程以及具有二元相互作用的基团贡献公式的两个预测模型PPR78和PR2SRK计算的结果进行了比较参数。仔细注意了高摩尔质量组分的临界常数和偏心因子。由于混合物还包含几种临界温度低于某些或所有实验温度的轻质物质,因此我们研究了PR78和SRK方程的Boston-Mathias修正的使用。结果表明,这些模型可以以合理的精度预测包含CO2和复杂碳氢化合物混合物的系统的气液平衡,而无需针对实验数据回归多个二元参数。

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