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Evaluation of energetic benefit for solid-liquid phase change CO2 absorbents

机译:用于固液相变二氧化碳吸收剂的能量益处的评价

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A preliminary evaluation of desorption energy requirement for a precipitating system shows that precipitate formation results to a decrease in desorption energy requirement for a precipitating amino acid salt system compared to a non-precipitating one. Based on a conventional absorber-stripper configuration, only a marginal benefit may be achieved for a precipitating 5m' KSAR compared to a 30wt% MEA system. Vapour liquid solid equilibrium measurement was carried out for a newly selected precipitating system at 40 and 120 °C. This precipitating system has good absorption rate and is able to precipitate earlier in the absorption process. The measured equilibrium CO2 partial pressure shows good temperature sensitivity and thus good potential for a significant reduction in desorption energy requirement. The cyclic capacity of this system at 10kPa CO2 partial pressure is found to be higher than that of 30wt% MEA by 61% and by 39% for a precipitating 5m' KSAR system.
机译:对沉淀系统的解吸能量要求的初步评价表明,与非沉淀物相比,沉淀地形成导致沉淀氨基酸盐系统的解吸能要求的降低。基于传统的吸收器剥离装置,与30wt%的MEA系统相比,对于沉淀的5M'ksar,可以仅实现边际益处。在40℃和120℃下进行新选择的沉淀系统进行蒸汽液体固体平衡测量。该沉淀系统具有良好的吸收率并且能够在吸收过程中更早地沉淀。测量的平衡二氧化碳部分压力显示出良好的温度敏感性,因此潜在的解吸能要求的显着降低。发现该系统在10kPa CO 2分压下的循环能力高于30wt%的MEA,沉淀5M'KSAR系统的61%和39%。

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