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Investigation of parametric optimisation for the extraction of rice bran oil with the aid of ultrasound and its synthesis to biodiesel

机译:借助超声借助于超声萃取水稻麸皮的参数优化及其对生物柴油的研究

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Improvisation of the biodiesel production using low-cost feedstock and the process optimisation is the perfect measure for the mitigation of high cost associated with the production process. In this current study, we are focussing on the extraction of rice bran oil (RBO) which is mainly considered underutilised waste material for the synthesis of biodiesel. Solvent extraction of RBO was performed with the aid of ultrasound and the study of various process parameters were exhibited using design of experiment by Taguchi model. The highest extraction efficiency was obtained at S/R ratio: 4:1 (ml/g), Agitation speed: 150 (rpm), Agitation time: 60 (min), Size range: 427.5 (micron), Sonication time (min): 15 (min) and Power level: 70 (KW). It was observed that the ultrasound-assisted extraction produced better quality oil than the extraction performed by conventional Soxhlet. Secondly, the esterification was performed using sulphuric acid as the acid catalyst and parametric optimization was performed for the enhancement of biodiesel yield using L9 orthogonal array. The key factors viz. agitation speed of 1000 rpm, methanol to oil ratio (M/O) of 10:1and reaction temperature of 60 °C; were found to be favourable for the attainment of the maximum yield of biodiesel.
机译:使用低成本原料即兴生物柴油生产和过程优化是减轻与生产过程相关的高成本的理想措施。在本前研究中,我们主要侧重于稻米油(RBO)的提取,这主要被认为是未充分利用的废料用于合成生物柴油。借助于超声波进行RBO的溶剂萃取,并使用Taguchi模型的实验设计表现出各种工艺参数的研究。在S / R比下获得最高提取效率:4:1(ml / g),搅拌速度:150(rpm),搅拌时间:60(分钟),尺寸范围:427.5(微米),超声处理时间(min) :15(分钟)和功率水平:70(kW)。观察到超声辅助提取产生的优质油优于常规Soxhlet的提取。其次,使用硫酸进行酯化,因为使用L9正交阵列进行酸催化剂和参数化优化进行生物柴油产量的增强。关键因素viz。 1000rpm的搅拌速度,甲醇与油比(m / o)为10:1和反应温度为60°C;被发现有利于实现生物柴油的最大收益率。

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