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碳酸钾浸渍增强水滑石对 CO2 的吸附量。

Enhancement of CO2 sorption uptake on hydrotalcite by impregnation with K2CO3.

机构信息

Department of Chemical and Biological Engineering, Korea University, Seoul 136-713, Korea.

出版信息

Langmuir. 2010 Dec 21;26(24):18788-97. doi: 10.1021/la102974s. Epub 2010 Nov 19.

Abstract

The awareness of symptoms of global warming and its seriousness urges the development of technologies to reduce greenhouse gas emissions. Carbon dioxide (CO(2)) is a representative greenhouse gas, and numerous methods to capture and storage CO(2) have been considered. Recently, the technology to remove high-temperature CO(2) by sorption has received lots of attention. In this study, hydrotalcite, which has been known to have CO(2) sorption capability at high temperature, was impregnated with K(2)CO(3) to enhance CO(2) sorption uptake, and the mechanism of CO(2) sorption enhancement on K(2)CO(3)-promoted hydrotalcite was investigated. Thermogravimetric analysis was used to measure equilibrium CO(2) sorption uptake and to estimate CO(2) sorption kinetics. The analyses based on N(2) gas physisorption, X-ray diffractometry, Fourier transform infrared spectrometry, Raman spectrometry, transmission electron microscopy, scanning electron microscopy, and energy dispersive X-ray spectroscopy were carried out to elucidate the characteristics of sorbents and the mechanism of enhanced CO(2) sorption. The equilibrium CO(2) sorption uptake on hydrotalcite could be increased up to 10 times by impregnation with K(2)CO(3), and there was an optimal amount of K(2)CO(3) for a maximum equilibrium CO(2) sorption uptake. In the K(2)CO(3)-promoted hydrotalcite, K(2)CO(3) was incorporated without changing the structure of hydrotalcite and it was thermally stabilized, resulting in the enhanced equilibrium CO(2) sorption uptake and fast CO(2) sorption kinetics.

摘要

全球变暖症状及其严重性的认识促使开发减少温室气体排放的技术。二氧化碳(CO2)是一种代表性的温室气体,已经考虑了许多捕获和储存 CO2 的方法。最近,通过吸附去除高温 CO2 的技术受到了广泛关注。在这项研究中,已经知道水滑石在高温下具有 CO2 吸附能力,用 K2CO3 浸渍以增强 CO2 吸附量,并研究了 K2CO3 促进水滑石增强 CO2 吸附的机制。通过热重分析测量平衡 CO2 吸附量并估计 CO2 吸附动力学。通过氮气物理吸附、X 射线衍射、傅里叶变换红外光谱、拉曼光谱、透射电子显微镜、扫描电子显微镜和能量色散 X 射线光谱分析来阐明吸附剂的特性和增强 CO2 吸附的机制。通过浸渍 K2CO3,水滑石的平衡 CO2 吸附量可增加 10 倍,并且存在最佳量的 K2CO3 以获得最大的平衡 CO2 吸附量。在 K2CO3 促进的水滑石中,K2CO3 被掺入而不改变水滑石的结构,并具有热稳定性,从而增强了平衡 CO2 吸附量和快速的 CO2 吸附动力学。

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