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首页> 外文期刊>Separation and Purification Technology >Kinetic study of the reaction of diethanolamine with carbon dioxide in aqueous and mixed solvent systems-application to acid gas cleaning
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Kinetic study of the reaction of diethanolamine with carbon dioxide in aqueous and mixed solvent systems-application to acid gas cleaning

机译:水和混合溶剂体系中二乙醇胺与二氧化碳反应的动力学研究-在酸性气体净化中的应用

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摘要

The observed pseudo first-order reaction rate constants,k_o,for the overall reaction between CO_2 and diethanolamine (DEA) in aqueous,aqueous ethylene glycol (AQ-EG),aqueous diethylene glycol (AQ-DEG) and aqueous polyethylene glycol 200 (AQ-PEG) systems using the stopped flow technique at 298-313 K have been determined.The rate constants of involved reactions have been calculated according to the zwitterion mechanism.Good parity has been observed between the experimentally determined and calculated k_o values.Partial substitution of water by the diols is found to effect the k_0 values,the reaction order with respect to the amine and the determined rate constants of the involved reactions.Under the conditions studied,the fastest reaction kinetics were observed in the AQ-EG system at low amine concentrations,while at high [DEA] the reaction in water was found to be the fastest.Changes in the intermolecular attractive forces cause changes in the zwitterion formation rate (k_2 values) and affect the ease with which the amine can access the formed zwitterion for deprotonation (K_A values).Differences in steric factor cause the changes in the extent of zwitterion deprotonation by the diol (K_D values).Changes in the ease with which water molecules can access the zwitterion as well as the presence of ether groups in the diols result in changes in the extent of zwitterion deprotonation by water (K_w values).
机译:在水性乙二醇水溶液(AQ-EG),二甘醇水溶液(AQ-DEG)和聚乙二醇200(AQ确定了使用298-313 K停止流技术的(PEG)系统,根据两性离子机理计算了参与反应的速率常数,在实验确定的k_o和计算的k_o值之间观察到良好的均等性。发现二醇中的水会影响k_0值,相对于胺的反应顺序以及所涉及反应的确定的速率常数。在研究的条件下,在低胺下AQ-EG系统中观察到最快的反应动力学在高浓度[DEA]时,发现在水中的反应最快。分子间吸引力的变化引起两性离子形成速率(k_2值)和影响胺可接近生成的两性离子进行去质子化的难易程度(K_A值)。空间因子的差异会导致二醇的两性离子去质子化程度的变化(K_D值)。两性离子以及二醇中醚基的存在会导致水的两性离子去质子化程度的变化(K_w值)。

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