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Synthesis of N-Butyl Propionate Catalyzed by Muiti-Wwalled Carbon Nanotubes Loaded Cerous Sulfate

机译:用硅铝碳催化催化的正丁基丙酸丁酯的合成致硫酸盐

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Multi-walled carbon nanotubes ( MWCNTs) was used, as a catalyst carrier, to load cerous sulfate for catalyzing the synthesis of n-butyl propionate. The effects of nitric acid concentration, reaction time and reaction temperature on the purification of MWCNTs were investigated. The effects of molar ratio of butyl alcohol to propionic acid, the cerous sulfate load and the reaction time on the conversion of butyl acid were studied by single factor experiment method and orthogonal experiment method, respectively. The results show that the optimal conditions for purifying MWCNTs are: nitric acid concentration of 4 M, reaction time of 8 h and reaction temperature of 103°C and the optimal conditions for synthesizing n-butyl propionate are: molar ratio of butyl alcohol to propionic acid of 1.5:1, use level of loaded cerous sulfate of 0.15 g and reaction time of 70 min. The conversion of butyl acid for the MWCNTs loaded cerous sulfate reaches 96.7% which is higher than that for the unloaded cerous sulfate and the use level of cerous sulfate for the former is much less than that for the latter under same operation conditions.
机译:使用多壁碳纳米管(MWCNT)作为催化剂载体,以载有硫酸盐以催化丙酸正丁酯的合成。研究了硝酸浓度,反应时间和反应温度对MWCNT纯化的影响。通过单一因子实验方法和正交实验方法研究了丁醇与丙酸叔丁醇与丙酸,硫酸氯荷荷荷兰酸的反应时间的影响。结果表明,纯化MWCNT的最佳条件是:硝酸浓度为4μm,反应时间为8小时,反应温度为103℃,合成正丁基的最佳条件是:丁醇与丙醇的摩尔比酸为1.5:1,使用含有0.15g的硫酸盐水平,反应时间为70分钟。 MWCNTS的丁酸转化含有硫酸浓度的硫酸盐达到96.7%,其高于卸载的硫酸盐的硫酸盐,而前者的硫酸铈的使用水平远小于后者在相同操作条件下的硫酸硫酸盐水平。

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