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Equilibrium measurements of the NH3-CO2-H2O system - measurement and evaluation of vapor-liquid equilibrium data at low temperatures

机译:NH3-CO2-H2O系统的平衡测量-低温下气液平衡数据的测量和评估

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The equilibrium behavior of carbon dioxide (CO2) in aqueous ammonia at low temperatures was studied by means of experiments and modeling. The low-temperature conditions of this system are of interest for the development of ammonia-based CO2 capture. This study includes experimental analyses of the vapor and liquid phases to determine the fate of CO2 in aqueous ammonia. The partial pressure of CO2 at equilibrium was measured in a gas chromatograph. The vapor phase was assessed with ammonia concentrations at 5 and 10 wt%, CO2-loadings in the range of 0.15-0.75, and at the temperatures of 10 degrees C, 20 degrees C, and 40 degrees C. The liquid-phase carbon distribution was determined based on Raman spectroscopy and partial least-squares regression modeling. Speciation of the liquid phase was determined at 5 wt% and 10 wt%, CO2-loadings in the range of 0-0.6, and room temperature (25 degrees C). Two thermodynamic models of the NH3-CO2-H2O system were evaluated with respect to the measured data. For the prediction of the partial pressure of CO2, the model devised by Que and Chen [6] proved to be the most accurate, while for the liquid-phase predictions, there was no significant difference between the models in terms of accuracy. (C) 2014 Published by Elsevier B.V.
机译:通过实验和模型研究了氨水在低温下二氧化碳(CO2)的平衡行为。该系统的低温条件对于开发基于氨的CO2捕集很重要。这项研究包括对气相和液相的实验分析,以确定氨水中CO2的命运。在气相色谱仪中测量平衡时CO 2的分压。在5和10 wt%的氨浓度,0.15-0.75的CO2负载量以及10摄氏度,20摄氏度和40摄氏度的温度下评估了气相。液相碳分布基于拉曼光谱和偏最小二乘回归模型确定。确定液相的形态为5重量%和10重量%,CO 2载量在0-0.6的范围内以及室温(25℃)。针对测量数据评估了NH3-CO2-H2O系统的两个热力学模型。对于二氧化碳分压的预测,由Que和Chen [6]设计的模型被证明是最准确的,而对于液相预测,模型之间的准确性没有显着差异。 (C)2014由Elsevier B.V.发布

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