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The comparison of CO2 absorption performance between DEAPA (3-Diethylaminopropylamine) and blends of MEA-MDEA

机译:Deapa(3-二乙胺丙基胺)与MEA-MDEA共混物的CO2吸收性能的比较

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Amineaffects the absorption performance and energy cost forCO2 capture with chemical solvents.To searchthe desirable amine solvents with higher absorption rate andlower energy penalty would be a challenge task. In the presented study, the CO2 absorption performance for3-(Diethylamino)propylamine (DEAPA), a diamine that contains one primary and one tertiary amine in the same molecule, is investigated and compared with the blended amine system of Monoethanolamine and Methyldiethanolamine (MEA-MDEA), a mixed amine solvent of equal mole of primary and tertiary amine. The absorption rate and CO2 equilibrium solubility are tested for DEAPA (2 M) and MEA-MDEA (4 M,mole ratio=1:1), and the MEA is served as the base case. The experimental results show that the intramolecular tertiary amino group of DEAPA can promote the CO2 absorption rate of the intramolecular primary amino group and enhance its CO2 absorption capacity. The results from ~(13)C NMR technique also indicate that the intermolecular tertiary amine in MEA-MDEA system ismore favored to promote the primary amine in the blend to form the bicarbonate at an earlier CO2 equivalent loading stage and produce less carbamate than that of the intramolecular tertiary amino group of DEAPA to its primary amino group.
机译:AmineFECTS使用化学溶剂的吸收性能和能量成本捕获。为了搜索较高吸收率的可理想的胺溶剂,能量罚款是一个挑战任务。在本研究中,研究了CO 2吸收性能,对3-(二乙基氨基)丙胺(DAPA),含有一个初级和一个叔胺的二胺,并与单乙醇胺和甲基二乙醇胺的混合胺体系进行比较(MEA- MDEA),相等摩尔的初级和叔胺的混合胺溶剂。对DeAPA(2M)和MEA-MDEA(4μm,摩尔比= 1:1)测试的吸收率和CO 2平衡溶解度,并且MEA用作基础壳体。实验结果表明,Deapa的分子内叔氨基可促进分子内初级氨基的CO2吸收率,提高其CO 2吸收能力。 〜(13)C NMR技术的结果还表明,MEA-MDEA系统中的分子间叔胺是人们喜欢在混合物中促进初级胺,以在早期的CO 2当量负载阶段形成碳酸氢盐,并产生比其更少的氨基甲酸酯Deapa的分子内第三氨基至其原发性氨基。

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