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The effect of concentration and acid types on the acidification process for improving the glycerol concentration and its application as a bio additive

机译:浓度和酸类型对改善甘油浓度的酸化过程及其作为生物添加剂的应用

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The rise of biodiesel production resulted in an increase in the formation of glycerol as a by-product.It takes some effort to purified the crude glycerol and convert it into more valuable product.One of these is by converting glycerol into triacetin which can be used as a bio additive in fuel through the acetylation process.This study aims to determine the effect of concentration and type of acid used in the glycerol purification.The purification were done by acidification,adsorption,filtration,distillation and evaporation.The acidification processes used H3PO4,H2SO4,HC1 with percentage of 0.5%,1%,2.5%,5%,7.5%,10%.The purified glycerol was analyzed to determine glycerol content,water content,density and viscosity and converted through acetylation reaction using Ni/Zeolite as a catalyst.The reaction products were analyzed by NaOH titration to determine the unreacted acetic acid which is converted into conversion of reaction.It can be concluded that the highest glycerol concentration was achieved in the addition 5% of H3PO4 with glycerol content of 79.59% and glycerol conversion in acetylation reaction of 82.39%.And its application as a bio additive can increase the Octane Number of commercial gasoline by 6.5%.
机译:生物柴油生产的兴起导致甘油的形成增加,作为逐果子丙醇。尤其努力将粗甘油纯化并将其转化为更有价值的产品。其中的内容是通过将甘油转化为可使用的三醋甘油作为通过乙酰化过程的燃料中的生物添加剂。本研究旨在确定甘油纯化中使用的酸浓度和酸类型的影响。纯化通过酸化,吸附,过滤,蒸馏和蒸发来完成。酸化过程使用H3PO4 ,H 2SO4,HC1,百分比为0.5%,1%,2.5%,5%,7.5%,10%。分析纯化的甘油,以确定甘油含量,水含量,密度和粘度,并使用Ni /沸石通过乙酰化反应转化作为催化剂。通过NaOH滴定分析反应产物,以确定转化为反应转化的未反应的乙酸。可以得出结论,最高甘油浓度是在加入5%的H3PO4中,甘油含量为79.59%,甘油转化为82.39%的甘油转化。其作为生物添加剂的应用可以将辛烷值的商业汽油量增加6.5%。

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