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The catalytic effect of calcium and potassium on CO2 gasification of Shengli lignite: the role of carboxyl

机译:钙和钾对胜利褐煤CO2气化的催化作用:羧基的作用

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摘要

The CO2 gasification of Chinese Shengli lignite (SL) catalysed by K+ and Ca2+ was studied. The results showed that calcium could greatly decrease the gasification reaction temperature of SL, and the gasification reaction rates of acid-treated SL catalysed by calcium were significantly higher than that catalysed by potassium. Kinetic analysis showed that the activation energy of the reaction catalysed by calcium was much lower than that catalysed by potassium, which was the reason for the higher catalytic activity of calcium. Fourier transform infrared characterization showed that, compared with acid-treated SL, the addition of K+/Ca2+ resulted in the significant weakening of C=O bond, and new peaks attributed to carboxylate species appeared. X-ray photoelectron spectroscopy results indicated that the numbers of C=O decreased after the metal ions were added, indicating the formation of metal–carboxylate complexes. Raman characterization showed that the ID1/IG values increased, suggesting more structural defects, which indicated that the reactivity of coal samples had a close relation with amorphous carbon structures. Ca2+ could interact with the carboxyl structure in lignite by both ionic forces and polycarboxylic coordination, while K+ interacted with carboxyl structure mainly via ionic forces.
机译:研究了K + 和Ca 2 + 催化的胜利胜利褐煤(SL)的CO2气化。结果表明,钙可以极大地降低SL的气化反应温度,钙催化的酸处理SL的气化反应速率明显高于钾的催化气化反应速率。动力学分析表明,钙催化的反应活化能比钾催化的活化能低得多,这是钙催化活性较高的原因。傅里叶变换红外表征表明,与酸处理的SL相比,添加K + / Ca 2 + 导致C = O键显着弱化,并且新的出现了归因于羧酸盐种类的峰。 X射线光电子能谱分析结果表明,添加金属离子后C = O的数量减少,表明形成了金属-羧酸盐配合物。拉曼表征表明,ID1 / IG值增加,表明存在更多的结构缺陷,这表明煤样品的反应性与无定形碳结构密切相关。 Ca 2 + 可以通过离子力和多元羧酸配位作用与褐煤中的羧基结构相互作用,而K + 则主要通过离子力与羧基结构发生相互作用。

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