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Densities of the binary system of carbon dioxide and dodecane from (313 to 353) K and pressures up to 18 MPa

机译:二氧化碳二元系统的密度和十二烷(313至353)K和高达18 MPa的压力

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Injecting carbon dioxide into oil/gas fields has been regarded as a feasible way to reduce the global warming, at the same time it could enhance oil recovery. The density of CO2 + oil is a key parameter for carbon dioxide capture and storage. Dodecane has similar thermal physical properties with petroleum. The aim of the work is to reveal the relationship between the density and the pressure and the temperature for the carbon dioxide (x) and dodecane (1-x). It was measured by the magnetic suspension balance (MSB) with temperature from 313.15 K to 353.15 K and pressure from 8 to 18 MPa at different CO2 mole fractions: x=0, 0.2497, 0.5094, 0.7576 and 0.8610. The experimental results show that the density of CO2 + dodecane mixture increases with the increasing pressure and decreases with the increasing temperature. It is found that the density of the mixture increases with the increasing concentration of CO2 firstly and then decreases at high mole fractions. The variation trend is similar with that of CO2 + decane /tridecane mixtures. BWRS equation of state was established based on the experimental data, which agrees well with the density of CO2 + dodecane.
机译:将二氧化碳注入油/天然气领域被认为是减少全球变暖的可行方式,同时它可以提高石油回收。 CO2 +油的密度是二氧化碳捕获和储存的关键参数。十二烷与石油有类似的热物理性质。该工作的目的是揭示密度与压力与二氧化碳(X)和十二烷(1-X)的温度之间的关系。通过磁悬浮余量(MSB)测量,温度从313.15k至353.15k,在不同的CO 2摩尔分数下的压力为8-18MPa:x = 0,0.2497,0.5094,0.7576和0.8610。实验结果表明,CO2 +十二烷混合物的密度随着越来越大的压力而增加,随着温度的增加而降低。发现混合物的密度首先随着CO 2的浓度增加而增加,然后在高摩尔级分下降。变异趋势与CO2 +癸烷/仙藻混合物的变化趋势类似。 BWRS状态的方程是基于实验数据建立的,这与CO2 +十二烷的密度吻合良好。

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