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三价阳离子对 Mg-M-CO(3) 层状双氢氧化物高温 CO(2)捕集性能的影响。

The effect of trivalent cations on the performance of Mg-M-CO(3) layered double hydroxides for high-temperature CO(2) capture.

机构信息

Institute of Chemical and Engineering Sciences, A*STAR, Jurong Island, Singapore.

出版信息

ChemSusChem. 2010 Aug 23;3(8):965-73. doi: 10.1002/cssc.201000099.

Abstract

The effect of trivalent cations on the performance of Mg-M-CO(3) (M=Al, Fe, Ga, Mn) layered double hydroxides (LDHs) for high-temperature CO(2) capture is systematically investigated for the first time. We demonstrate that the M(3+) determines the structure evolution of LDH derivatives under thermal treatment, and finally influences the CO(2) capture capacity. Very different calcination temperatures are required for the different LDHs to obtain their maximum CO(2) capture capacities. To have a clear understanding of the reason behind these big differences the physicochemical properties, thermal stability, and memory effect of the LDHs were investigated. Both the thermal stability and the memory effect of LDHs are greatly influenced by the type of trivalent cation. The CO(2) capture capacities were also evaluated under various conditions. Another important finding of this work is that the quasi-amorphous phase obtained by thermal treatment at the lowest possible temperature gives the highest CO(2) capture capacity.

摘要

首次系统研究了三价阳离子对 Mg-M-CO3(M=Al、Fe、Ga、Mn)层状双氢氧化物(LDHs)在高温下 CO2 捕集性能的影响。结果表明,M3+决定了 LDH 衍生物在热处理下的结构演变,最终影响 CO2 的捕集能力。不同的 LDH 需要不同的煅烧温度才能达到最大的 CO2 捕集能力。为了清楚地了解这些巨大差异的原因,研究了 LDHs 的物理化学性质、热稳定性和记忆效应。三价阳离子的类型极大地影响了 LDH 的热稳定性和记忆效应。还在不同条件下评估了 CO2 的捕集能力。这项工作的另一个重要发现是,在尽可能低的温度下通过热处理获得的准非晶相具有最高的 CO2 捕集能力。

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