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Biodiesel production with continuous processing and direct Ultrasonic Assisted

机译:连续加工和直接超声波辅助的生物柴油生产

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Biodiesel is an alternative energy can made from renewable resources such as vegetable oils and animal fats. One of considerable resource is vegetable oil, the plant's lipid-based oils. However, the application of vegetable oil in Indonesia are mostly used for foodstuff oil (edible oil), so it's not recommended as biodiesel feedstock because it is vital for human consumption, therefore it is required a new source of low usability vegetable oil such as Waste-Cooking Oil. The application of waste-cooking oil as biodiesel feedstock can reduce waste problems too. One technology that are lately often used is Ultrasonic-Assisted Technology. The objective of this research is to develop biodiesel process with Continuous Processing and Ultrasonic-Assisted Technology. Free Fatty Acid (FFA) contents in used cooking oil was analyzed with acidi alkali metry. FFA was reduced with esterification or neutralization process up to <3wt.%. Transesterification reaction was carried out with a base catalyst continuously reaction and ultrasonic assisted. Products were separated and analyzed about density, viscosity and contents of methyl ester. The results of experiments shown that the experiments with ratio methanol to triglyceride 8∶1 was better product than ratio of 4∶1. Increasing flowrate (14–16 ml/.minute) caused yield of biodiesel increase to. Yield of biodiesel was obtained 75.6–78%. Characteristics of biodiesel produced in accordance with ISO biodiesels.
机译:生物柴油是一种可替代能源,可以由可再生资源制成,例如植物油和动物脂肪。丰富的资源之一是植物油,即植物的脂质基油。但是,印尼的植物油主要用于食品油(食用油),因此不建议用作生物柴油原料,因为它对人类食用至关重要,因此需要低可用性植物油等新来源-食用油。将烹饪废油用作生物柴油原料也可以减少浪费问题。最近最常用的一种技术是超声波辅助技术。这项研究的目的是通过连续加工和超声辅助技术开发生物柴油工艺。用酸性碱度法分析用过的食用油中的游离脂肪酸(FFA)含量。通过酯化或中和过程将FFA还原至<3wt。%。酯交换反应是在碱催化剂连续反应和超声辅助下进行的。分离产物并分析其密度,粘度和甲酯含量。实验结果表明,甲醇与甘油三酯之比为8:1的实验产品要好于4:1。流量增加(14–16 ml / .min)导致生物柴油的收率增加至。生物柴油的产率为75.6–78%。根据ISO生物柴油生产的生物柴油的特性。

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