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Biodiesel Production from Waste Palm Cooking Oil Using Solid Acid Catalyst Derived from Coconut Meal Residue

机译:使用源自椰子膳食残留的固体酸催化剂从废棕榈油烹制油的生物柴油生产

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摘要

This study investigates the utilization of coconut meal residue for the preparation of a solid acid catalyst in a one-step simple protocol and its potential use in biodiesel production from waste palm cooking oil in three different reactors. The prepared catalyst was successfully employed for biodiesel production in diverse reaction conditions. The biodiesel yields were 92.7%, 95.5%, and 94.7% in an open reflux reactor, an autoclave reactor, and a microwave-assisted reactor, respectively. The biodiesel yield increases with increasing temperature in an autoclave reactor and with time in all three reactors up to an optimum value. The catalyst can be reused, and biodiesel yields of > 80% were obtained after the fourth run in an open reflux reactor and an autoclave reactor. When considering both the catalytic activity and energy requirement, the autoclave reactor showed better performance. Microwave-assisted biodiesel production is an energy efficient method that shortens the required reaction time compared to conventional heating. However, the stability of the catalyst decreases during recycling in a microwave reactor compared to the other reactors. Fuel properties, such as kinematic viscosity, flash point, pour point, heating value, oxidation stability, and ash contents of the biodiesel satisfied the international standards. Therefore, produced biodiesel can be used.
机译:本研究研究了椰子膳食残余物在一步简单方案中制备固体酸催化剂及其在三种不同反应器中废棕榈油烹饪油中的生物柴油生产潜在用途。制备的催化剂在不同反应条件下成功用于生物柴油生产。在开口回流反应器,高压釜反应器和微波辅助反应器中,生物柴油产率分别为92.7%,95.5%和94.7%。在高压釜反应器中的温度升高,并且在所有三个反应器中随着最佳值的时间,生物柴油产量增加。可以重复使用催化剂,在开口回流反应器和高压釜反应器中,在第四次运行后获得> 80%的生物柴油产率。在考虑催化活性和能量要求时,高压釜反应器显示出更好的性能。微波辅助生物柴油生产是一种能量有效方法,与常规加热相比缩短所需的反应时间。然而,与其他反应器相比,在微波反应器中再循环期间催化剂的稳定性降低。燃料性能,如运动粘度,闪点,倾点,加热值,氧化稳定性和生物柴油的灰分地满足国际标准。因此,可以使用生产的生物柴油。

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