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首页> 外文期刊>International Journal of Greenhouse Gas Control >CO2 solubility and liquid phase ion speciation determined by C-13 NMR technique in IPAB-CO2-H2O system
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CO2 solubility and liquid phase ion speciation determined by C-13 NMR technique in IPAB-CO2-H2O system

机译:IPAB-CO2-H2O体系中通过C-13 NMR技术测定的CO2溶解度和液相离子形态

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摘要

A newly developed alkanolamine (4-isopropylamino-2-butanol (IPAB)), with a high carbon dioxide (CO2) loading capacity and low regeneration energy, as a potential CO2 absorbent was studied in this work. The accurate quantitative C-13 NMR techniques were selected to investigate the ion speciations in aqueous IPAB-CO2-H2O system. Calibration equations were established to quantify the exact ion concentrations of free amines and protonated amines in the IPAB-CO2-H2O system. The results show that the NMR method can be used to obtain both qualitative and quantitative information of the amine-CO2-H-2 0 system. IPAB had a larger capacity for CO2 than MEA because of the dominant formation of bicarbonate rather than carbamate. No significant carbon peak of carbamate was observed at various CO2 loadings in the IPAB solutions, which can be explained by the sterically hindered effects on the forming of an unstable carbamate. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,研究了一种新开发的烷醇胺(4-异丙基氨基-2-丁醇(IPAB)),具有较高的二氧化碳(CO2)负载量和较低的再生能量,可作为潜在的CO2吸收剂。选择了准确的定量C-13 NMR技术来研究IPAB-CO2-H2O水溶液中的离子形态。建立校准方程式以量化IPAB-CO2-H2O系统中游离胺和质子化胺的确切离子浓度。结果表明,NMR方法可用于获得胺-CO2-H-2 0系统的定性和定量信息。 IPAB具有比MEA更大的CO2容量,因为主要形成的是碳酸氢盐而不是氨基甲酸酯。在IPAB溶液中,在各种CO2负载下均未观察到明显的氨基甲酸酯碳峰,这可以通过对形成不稳定的氨基甲酸酯的空间位阻效应来解释。 (C)2016 Elsevier Ltd.保留所有权利。

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