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[EMIM][Ac] 及其与生物聚合物混合物中大气水吸附的动态过程以及这些体系中的二氧化碳捕获。

The dynamic process of atmospheric water sorption in [EMIM][Ac] and mixtures of [EMIM][Ac] with biopolymers and CO2 capture in these systems.

作者信息

Chen Yu, Sun Xiaofu, Yan Chuanyu, Cao Yuanyuan, Mu Tiancheng

机构信息

Department of Chemistry, Renmin University of China , Beijing 100872, P. R. China.

出版信息

J Phys Chem B. 2014 Oct 2;118(39):11523-36. doi: 10.1021/jp5091075. Epub 2014 Sep 23.

Abstract

There are mainly three findings related to the dynamic process of atmospheric water sorption in the ionic liquid (IL) 1-ethyl-3-methlyl-imidazolium acetate ([EMIM][Ac]) and its mixtures with biopolymers (i.e., cellulose, chitin, and chitosan), and CO2 capture in these systems above. The analytical methods mainly include gravimetric hygroscopicity measurement and in situ infrared spectroscopy with the techniques of difference, derivative, deconvoluted attenuated total reflectance and two-dimensional correlation. These three findings are listed as below. (1) Pure [EMIM][Ac] only shows a two-regime pattern, while all the mixtures of [EMIM][Ac] with biopolymers (i.e., cellulose, chitin, and chitosan) present a three-regime tendency for the dynamic process of atmospheric water sorption. Specifically, the IL/chitosan mixture has a clear three-regime mode; the [EMIM][Ac]/chitin mixture has an unclear indiscernible regime 3; and the [EMIM][Ac]/cellulose mixture shows an indiscernible regime 2. (2) [EMIM][Ac] and its mixtures with biopolymers could physically absorb a trace amount of and chemically react with a much larger amount of CO2 from the air. The chemisorption capacity of CO2 in these pure and mixed systems is ordered as chitosan/[EMIM][Ac] mixture > chitin/[EMIM][Ac] mixture > cellulose/[EMIM][Ac] mixture > pure [EMIM][Ac] (ca. 0.09 mass ratio % g/g CO2/IL). (3) The CO2 solubility in [EMIM][Ac] decreases about 50% after being exposed to the atmospheric moist air for some specific time period.

摘要

关于离子液体(IL)1-乙基-3-甲基咪唑醋酸盐([EMIM][Ac])及其与生物聚合物(即纤维素、几丁质和壳聚糖)的混合物中大气水吸附的动态过程,以及上述这些体系中的二氧化碳捕获,主要有三个发现。分析方法主要包括重量吸湿测量和原位红外光谱,采用了差示、导数、去卷积衰减全反射和二维相关等技术。这三个发现如下所示。(1)纯[EMIM][Ac]仅呈现出双阶段模式,而[EMIM][Ac]与生物聚合物(即纤维素、几丁质和壳聚糖)的所有混合物在大气水吸附的动态过程中呈现出三阶段趋势。具体而言,IL/壳聚糖混合物具有清晰的三阶段模式;[EMIM][Ac]/几丁质混合物的第三阶段不明显难以区分;[EMIM][Ac]/纤维素混合物的第二阶段难以辨别。(2)[EMIM][Ac]及其与生物聚合物的混合物能够物理吸收微量的并与大量来自空气中的二氧化碳发生化学反应。这些纯体系和混合体系中二氧化碳的化学吸附能力排序为壳聚糖/[EMIM][Ac]混合物>几丁质/[EMIM][Ac]混合物>纤维素/[EMIM][Ac]混合物>纯[EMIM][Ac](约0.09质量比% g/g CO₂/IL)。(3)在暴露于大气潮湿空气中特定时间段后,[EMIM][Ac]中的二氧化碳溶解度降低约50%。

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