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New absorption liquids for the removal of CO2 from dilute gas streams using membrane contactors

机译:使用膜接触器从稀薄气流中去除CO2的新型吸收液

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摘要

A new absorption liquid based on amino acid salts has been studied for CO2 removal in membrane gas–liquid contactors. Unlike conventional gas treating solvents like aqueous alkanolamines solutions, the new absorption liquid does not wet polyolefin microporous membranes. The wetting characteristics of aqueous alkanolamines and amino acid salt solutions for a hydrophobic membrane was studied by measuring the surface tension of the liquid and the breakthrough pressure of the liquid into the pores of the membrane. The dependence of the breakthrough pressure on surface tension follows the Laplace–Young equation. The performance of the new absorption liquid in the removal of CO2 was studied in a single fiber membrane contactor over a wide range of partial pressures of CO2 in the gas phase and amino acid salt concentrations in the liquid. A numerical model to describe the mass transfer accompanied by multiple chemical reactions occurring during the absorption of CO2 in the liquid flowing through the hollow fiber was developed. The numerical model gives a good prediction of the CO2 absorption flux across the membrane for the absorption of CO2 in the aqueous amino acid salt solutions flowing through the hollow fiber.
机译:已经研究了一种基于氨基酸盐的新型吸收液,用于在膜气液接触器中去除CO2。与传统的气体处理溶剂(如链烷醇胺水溶液)不同,新的吸收液不会润湿聚烯烃微孔膜。通过测量液体的表面张力和液体进入膜孔的穿透压力,研究了疏水膜用链烷醇胺水溶液和氨基酸盐溶液的润湿特性。突破压力对表面张力的依赖性遵循拉普拉斯-杨方程。在单纤维膜接触器中,研究了在气相中CO2的分压和液体中氨基酸盐浓度的较宽范围内,新型吸收液在去除CO2方面的性能。建立了一个数值模型,描述了在中空纤维流动的液体中吸收CO2的过程中伴随着多种化学反应而发生的质量转移。数值模型很好地预测了穿过膜的CO2吸收通量,以供在流经中空纤维的氨基酸盐水溶液中吸收CO2。

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