首页> 外文OA文献 >Esterifikasi Gliserol sebagai Produk Samping Biodiesel Menjadi Triacetin dengan Menggunakan Katalis Zeolit Alam pada Variasi Suhu Reaksi dan Konsentrasi Katalis
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Esterifikasi Gliserol sebagai Produk Samping Biodiesel Menjadi Triacetin dengan Menggunakan Katalis Zeolit Alam pada Variasi Suhu Reaksi dan Konsentrasi Katalis

机译:在反应温度变化和催化剂浓度下使用天然沸石催化剂将甘油酯化为甘油三乙酸酯的生物柴油副产物

摘要

Glycerol is by-product of biodiesel. Production of biodiesel will produce glycerol about 10% of total biodiesel. The excess glycerol able to treatment to a more expensive product, such as triacetin. Triacetin is a triester from glycerol and acetic acid. It is used as good additive and also soluble in biodiesel. Triacetin was produced by esterification of glycerol and acetic acid. The aim of this research was to know the influence of the concentration of catalyst and esterification temperature reaction toward glycerol conversion. Esterification of glycerol was done by activated natural zeolite catalyst. The molar ratio of glycerol and acetic acid was 1:7. The temperature that used was 90oC, 100oC, and 110oC, than the concentration of zeolite catalyst was 2%, 4%, and 6% of acetic acid mass. The highest glycerol conversion was 85,21% that reached in reaction temperature 110oC and catalyst concentration 4% of acetic acid mass. The temperature and catalyst concentration of esterification was directly proportional of the glycerol conversion.
机译:甘油是生物柴油的副产品。生产生物柴油将产生甘油,约占总生物柴油的10%。多余的甘油能够处理成更昂贵的产品,例如三醋精。三醋精是甘油和乙酸的三酯。它用作良好的添加剂,也可溶于生物柴油。三醋精是通过甘油和乙酸的酯化反应制得的。这项研究的目的是了解催化剂浓度和酯化温度反应对甘油转化率的影响。甘油的酯化是通过活化的天然沸石催化剂进行的。甘油和乙酸的摩尔比为1:7。所用温度为90℃,100℃和110℃,而沸石催化剂的浓度为乙酸质量的2%,4%和6%。最高的甘油转化率是在反应温度110oC和催化剂浓度为乙酸质量的4%时达到的85.21%。酯化的温度和催化剂浓度与甘油转化率成正比。

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