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Thermodynamic properties of CO_2 + SO_2 + CH_4 mixtures over wide ranges of temperature and pressure. Evaluation of CO_2/SO_2 co-capture in presence of CH_4 for CCS

机译:CO_2 + SO_2 + CH_4在宽温度和压力范围内混合物的热力学性能。评估CO_2 / SO_2 CH_4的CCS的共捕获

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In this work, density, vapor-liquid equilibrium and speed of sound measurements of the mixtures [CO2+ 4.72 mol% SO2+ 1.85 mol% CH4] and [CO2+ 0.09 mol% SO2+ 1.54 mol% CH4] were performed over the temperature range 263-373 K and at pressures of up to 30 MPa for density and up to 190 MPa for speed of sound. For the speed of sound measurements, the mixtures were doped with congruent to 0.8 mol% CH3OH. We compared our results to the values calculated using an extended version of the equation of state for combustion gases (EOSCG) that includes binary models for the CO2+ SO2 and CO2+ CH4 subsystems, and a perturbed-chain statistical associating fluid theory (PC-SAFT) equation of state, validating both equations in this way. From our experimental results, we evaluated the impact of the simultaneous presence of SO2 and CH4 as impurities in anthropogenic CO2 on selected parameters for carbon capture and storage technology. With the understanding that chemical effects have not been considered, we concluded that the presence of 4.72 mol% SO2 compensates for the negative effect of 1.85 mol% CH4 on most of the studied parameters, resulting in a favorable fluid for carbon, capture and storage, contrary to the mixture with 0.09 mol% SO2 and 1.54 mol% CH4.
机译:在该工作中,在263-373的温度范围内进行密度,蒸汽 - 液体平衡和声音测量的声音测量速度[CO2 + 4.72摩尔%SO2 + 1.85mol%SO2 + 1.54mol%CH4] K和高达30 MPa的压力,频率高达30 MPa,声音速度高达190 MPa。对于声音测量的速度,混合物掺杂有一致为0.8mol%CH 3 OH。将结果与包括用于CO2 + SO2 + CH4子系统的二进制模型的燃烧气体(EOSCG)的燃烧气体(EOSCG)的等式计算的结果进行了比较的值。以及扰动链统计关联流体理论(PC-SAFT)状态方程,以这种方式验证两个方程。从我们的实验结果中,我们评估了SO2和CH4同时存在作为人为CO2中的杂质对碳捕获和储存技术的选定参数的影响。通过了解化学效应尚未考虑,我们得出结论,4.72mol%SO2的存在补偿了大部分研究参数的1.85mol%CH4的负效应,导致碳,捕获和储存的有利流体,与0.09mol%SO2和1.54mol%CH4的混合物相反。

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