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Factors affecting the catalytic activity of multi-walled carbon nanotube for ozonation of oxalic acid

机译:影响多壁碳纳米管催化草酸臭氧化反应的因素

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摘要

Ozonation of oxalic acid in aqueous solution was conducted using multi-walled carbon nanotube (MWCNT) as the catalyst. The effects of operating conditions on the catalytic performance of MWCNT for oxalic acid removal were investigated. The catalyst dosage and the reaction temperature exert positive effects on the oxalic acid removal by MWCNT catalytic ozonation. The maximum degradation efficiency of oxalic acid is obtained with its initial concentration of 1.0 mM. The degradation efficiency of oxalic acid increases with the initial pH value in the range of 1.0-3.0, whereas an opposite trend is observed when the initial pH value further increases from 3.0 to 6.1. The effect of initial pH value indicates that the oxalic acid adsorption on catalyst surface is essential for its effective removal by MWCNT catalytic ozonation. The inhibition of tert-butanol on the activity of MWCNT at initial pH 6.1 is more significant compared with the case of initial pH 3.0, suggesting that the contribution of bulk reactions to oxalic acid removal would be strengthened at a high initial pH value.
机译:草酸在水溶液中的臭氧化是使用多壁碳纳米管(MWCNT)作为催化剂进行的。研究了操作条件对多壁碳纳米管催化草酸去除性能的影响。催化剂用量和反应温度对通过MWCNT催化臭氧化法去除草酸有积极作用。草酸的初始浓度为1.0 mM时,可获得最大的降解效率。草酸的降解效率随着初始pH值在1.0-3.0范围内的增加而增加,而当初始pH值从3.0进一步增加到6.1时,观察到相反的趋势。初始pH值的影响表明草酸在催化剂表面的吸附对于通过MWCNT催化臭氧化有效去除草酸至关重要。与初始pH 3.0的情况相比,叔丁醇对初始pH 6.1的MWCNT活性的抑制作用更为显着,这表明在高初始pH值下,本体反应对草酸去除的贡献将会增强。

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