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Ultrasonic-assisted Biodiesel Production from Palm oil using adsorption of homogeneous catalysts over solid sodium silicate

机译:超声波辅助生物柴油生产从棕榈油使用固体硅酸钠的均相催化剂吸附

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Biodiesel is an alternative energy resources, which produced from transesterification of oils and alcohols using homogeneous and heterogeneous catalysts. Ultrasonic was used as pre-mixer for KOH, Na_2SiO_3, palm oil and methanol before increasing the reaction temperature to 60°C using a water bath. All experiments were conducted at a molar ratio of methanol: oil of 6:1, reaction time of 60 min, reaction temperature of 60°C and well mixing. The suspension was filtered after the end of the reaction. Purified biodiesel was obtained by water washing processes after crude biodiesel was separated from glycerol by 2 hr standing in a separating funnel. Filter solid cake was instantly used as supporter in next batch of the reaction. Effects of four variables, namely, pre-mixing period in the range of 0-10 s, number of filter cake recycle (2-4 cycles), sonicator power (10-90% of max. power of 200 watt and 20 kHz) and amount of KOH addition (0.25-0.75 g) were investigated. Response surface methodology was employed to evaluate and optimize the biodiesel production processes using Na_2SiO_3 adsorbed with KOH as catalyst. The design of experiment was carried out using the MINITAB RELEASE 16 and a result of 31 experiments was suggested to be made. The result showed the optimum condition of pre-mixing period of 14 s, the number of catalyst recycle to be 2 cycle, sonicator power of 36.3% and KOH addition of 0.3 g.
机译:生物柴油是一种替代能源资源,其使用均匀和异质催化剂从油和醇的酯交换中产生。在使用水浴增加反应温度至60℃之前,将超声用作KOH,NA_2SIO_3,棕榈油和甲醇的混合器。所有实验均以甲醇的摩尔比进行:6:1的油,反应时间60分钟,反应温度为60℃,混合良好。在反应结束后过滤悬浮液。通过2小时在分离漏斗中从甘油分离粗糙生物柴油后,通过水洗涤方法获得纯化的生物柴油。过滤固体滤饼在下一批反应中立即用作载体。四个变量的影响,即预混合期在0-10秒的范围内,滤饼数量(2-4次循环),超声波电源(最大10-90%。200瓦的功率和20 kHz)研究了KOH添加量(0.25-0.75g)。采用响应面方法来评估和优化使用与KOH作为催化剂吸附的NA_2SIO_3的生物柴油生产过程。使用Minitab释放物16进行实验的设计,提出了31种实验的结果。结果表明,预混合时期的最佳条件为14 s,催化剂再循环的数量是2个循环,超声波功率为36.3%,koh添加0.3g。

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