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A modified continuous flow apparatus for gas solubility measurements at high pressure and temperature with camera system

机译:一种改进的连续流量设备,可通过相机系统在高压和高温下测量气体溶解度

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A continuous flow apparatus with a camera system was modified for high-pressure gas-liquid equilibrium measurements. The continuous flow method is suitable for phase equilibrium measurements of heat-sensitive materials, such as heavy oils and bio-based feedstocks, which are refined in hydroprocesses at high temperatures and pressures. Benefits of the modified apparatus are a short residence time of a sample in the heated zone and no sampling is required. In contrast, the static method is usually impractical with the heat-sensitive materials due to the long residence time of sample in the equilibrium cell. In this study, the continuous flow apparatus and the measurement method was adopted and validated. The validation was conducted by measuring hydrogen solubility in toluene and n- hexadecane at high temperatures and pressures (T=461 -575 K, P= 5-10 MPa) and comparing the results with the literature values. Relative average pressure deviation was found to be 3.8% for measurements of this work when the PC-SAFT equation of state was optimized against literature values while the relative average pressure deviations for the literature data sets varied from 0.9% to 4.7%. Thus, the quality of measurements was shown to be excellent. In addition, hydrogen solubility was also measured in n- octadecane in order to obtain new data for this system. All measured systems were modeled with the PC- SAFT and the original and modified Peng-Robinson equations of state in order to simplify the validation of the measurement method and to compare the performance of the selected models. PC-SAFT was found to predict phase behavior of the systems precisely whereas the predictions of the Peng-Robinson modifications were less precise.
机译:改进了带摄像头系统的连续流动设备,用于高压气液平衡测量。连续流方法适用于热敏感材料(如重油和生物基原料)的相平衡测量,这些材料在高温高压下的加氢工艺中得到了精制。改进的仪器的好处是样品在加热区的停留时间短,不需要取样。相反,由于样品在平衡池中的停留时间较长,因此静态方法通常对热敏材料不可行。本研究采用并验证了连续流动装置和测量方法。通过在高温和高压(T = 461 -575 K,P = 5-10 MPa)下测量氢在甲苯和正十六烷中的溶解度并将结果与​​文献值进行比较来进行验证。当针对文献值对PC-SAFT状态方程进行优化时,这项工作的测量结果的相对平均压力偏差为3.8%,而文献数据集的相对平均压力偏差为0.9%至4.7%。因此,测量质量被证明是极好的。另外,还测量了正十八烷中的氢溶解度,以获得该系统的新数据。为了简化测量方法的验证并比较所选模型的性能,使用PC-SAFT以及原始状态方程和修正状态方程Peng-Robinson对所有测量系统进行了建模。发现PC-SAFT可以精确地预测系统的相位行为,而Peng-Robinson修改的预测则不那么精确。

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