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Biodiesel Preparation from Jatropha curcas Oil Catalyzed by Hydrotalcite Loaded With K_2CO_3

机译:负载K_2CO_3的水滑石催化麻疯树油制备生物柴油。

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This paper discusses the synthesis of biodiesel catalyzed by solid base of K2CO3/HT using Jatropha curcas oil as feedstock. Mg-Al hydrotalcite was prepared using co-precipitation methods, in which the molar ratio of Mg to Al was 3:1. After calcined at 600 °C for 3 h, the Mg-Al hydrotalcite and K_2CO_3 were grinded and mixed according to certain mass ratios, in which some water was added. The mixture was dried at 65 °C, and after that it was calcined at 600 °C for 3 h. Then, this Mg-Al hydrotalcite loaded with potassium carbonate was obtained and used as catalyst in the experiments. Analyses of XRD and SEM characterizations for catalyst showed the metal oxides formed in the process of calcination brought about excellent catalysis effect. In order to achieve the optimal technical reaction condition, five impact factors were also investigated in the experiments, which were mass ratio, molar ratio, reaction temperature, catalyst amount and reaction time. Under the best condition, the biodiesel yield could reach up to 96%.
机译:本文讨论了以麻风树麻疯树油为原料的K2CO3 / HT固体碱催化合成生物柴油。 Mg-Al水滑石采用共沉淀法制备,其中Mg与Al的摩尔比为3:1。在600°C下煅烧3 h后,将Mg-Al水滑石和K_2CO_3按照一定的质量比进行研磨和混合,并加入一些水。将混合物在65℃下干燥,然后在600℃下煅烧3小时。然后,获得该负载有碳酸钾的Mg-Al水滑石,并将其用作实验中的催化剂。催化剂的XRD和SEM表征分析表明,煅烧过程中形成的金属氧化物具有良好的催化效果。为了达到最佳的工艺反应条件,在实验中还研究了五个影响因素,分别是质量比,摩尔比,反应温度,催化剂用量和反应时间。在最佳条件下,生物柴油的产率可以达到96%。

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