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朝着用于 PCC 应用的胺溶液的合理设计迈进:CO2(aq)在水溶液中与环状和二级胺反应的动力学。

Toward rational design of amine solutions for PCC applications: the kinetics of the reaction of CO2(aq) with cyclic and secondary amines in aqueous solution.

机构信息

Department of Chemistry, The University of Newcastle, Callaghan, NSW 2308, Australia.

出版信息

Environ Sci Technol. 2012 Jul 3;46(13):7422-9. doi: 10.1021/es300541t. Epub 2012 Jun 15.

Abstract

The kinetics of the fast reversible carbamate formation reaction of CO(2)(aq) with a series of substituted cyclic secondary amines as well as the noncyclic secondary amine diethanolamine (DEA) has been investigated using the stopped-flow spectrophotometric technique at 25.0 °C. The kinetics of the slow parallel reversible reaction between HCO(3)(-) and amine has also been determined for a number of the amines by (1)H NMR spectroscopy at 25.0 °C. The rate of the reversible reactions and the equilibrium constants for the formation of carbamic acid/carbamate from the reactions of CO(2) and HCO(3)(-) with the amines are reported. In terms of the forward reaction of CO(2)(aq) with amine, the order with increasing rate constants is as follows: diethanolamine (DEA) < morpholine (MORP) ~ thiomorpholine (TMORP) < N-methylpiperazine (N-MPIPZ) < 4-piperidinemethanol (4-PIPDM) ~ piperidine (PIPD) < pyrrolidine (PYR). Both 2-piperidinemethanol (2-PIPDM) and 2-piperidineethanol (2-PIPDE) do not form carbamates. For the carbamate forming amines a Brønsted correlation relating the protonation constant of the amine to the carbamic acid formation rate and equilibrium constants at 25.0 °C has been established. The overall suitability of an amine for PCC in terms of kinetics and energy is discussed.

摘要

采用停流分光光度法在 25.0°C 下研究了一系列取代环状仲胺和非环状仲胺二乙醇胺(DEA)与 CO2(aq)的快速可逆氨基甲酸酯形成反应的动力学。通过(1)H NMR 光谱法在 25.0°C 下还确定了许多胺之间 HCO3(-)与胺之间的缓慢平行可逆反应的动力学。报道了 CO2 和 HCO3(-)与胺反应生成氨基甲酸/氨基甲酸酯的可逆反应速率和平衡常数。就 CO2(aq)与胺的正向反应而言,速率常数的增加顺序如下:二乙醇胺(DEA)<吗啉(MORP)硫代吗啉(TMORP)<N-甲基哌嗪(N-MPIPZ)<4-哌啶甲醇(4-PIPDM)哌啶(PIPD)<吡咯烷(PYR)。2-哌啶甲醇(2-PIPDM)和 2-哌啶乙醇(2-PIPDE)均不形成氨基甲酸酯。对于形成氨基甲酸酯的胺,建立了 25.0°C 下胺的质子化常数与氨基甲酸形成速率和平衡常数之间的 Brønsted 关系。讨论了胺在动力学和能量方面作为 PCC 的整体适用性。

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