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Solar energy as a process intensification tool for the biodiesel production from hempseed oil

机译:太阳能是从麻籽油生产生物柴油的过程强化工具

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摘要

A simple, green, and energy efficient method for the biodiesel production has been developed using Fresnel lens solar concentrator (FSC). The transesterification of hempseed oil using FSC approach and conventional heating approach was studied by varying different process variables such as molar ratio, catalyst loading, reaction time, and stirring speed with an objective to establish benefits of FSC method. The highest biodiesel yield of 97.37% was obtained for FSC method in 4 min of reaction time with reaction conditions of molar ratio 4.5:1, catalyst loading 0.9 wt%, temperature about 60 degrees C, and 200 rpm. While, conventional heating method yielded only 21.3% of biodiesel in similar reaction conditions. To obtain similar yield (97%), conventional heating method required 70 min of reaction time at molar ratio of 6:1, temperature of 60 degrees C, catalyst loading of 1.05 wt%, and stirring speed of 300 rpm. Energy efficiency for both the methods was calculated, and observed that FSC method is 73 times more energy efficient than conventional heating method. Therefore, FSC method intensifies the process by reducing the requirements of time, energy, molar ratio and catalyst amount. The physicochemical properties like acid value (0.23 mg of KOH/g of oil), density (0.87 g/cm(3)), kinematic viscosity (3.12 mm(2)/s), pour point (-1 degrees C) and flash point (153 degrees C) of synthesized biodiesel were also compared with American Chemical Society for the Materials (ASTM) D6751 standard and found within the limit.
机译:使用菲涅耳透镜太阳能聚光器(FSC)已开发出一种简单,绿色且节能的生物柴油生产方法。通过改变不同的工艺变量,例如摩尔比,催化剂负载量,反应时间和搅拌速度,研究了使用FSC方法和常规加热方法对大麻油进行酯交换反应,目的是建立FSC方法的优势。对于FSC方法,在4分钟的反应时间,摩尔比为4.5:1,催化剂负载量为0.9 wt%,温度约为60摄氏度,转速为200 rpm的反应条件下,生物柴油的最高产率为97.37%。而传统的加热方法在相似的反应条件下仅产生21.3%的生物柴油。为了获得相似的收率(97%),常规加热方法需要70:6的摩尔比的反应时间,60摄氏度的温度,1.05重量%的催化剂负载量和300 rpm的搅拌速度。计算了两种方法的能源效率,并观察到FSC方法的能源效率是传统加热方法的73倍。因此,FSC方法通过减少对时间,能量,摩尔比和催化剂量的要求来增强了工艺。物理化学性质,如酸值(0.23 mg KOH / g油),密度(0.87 g / cm(3)),运动粘度(3.12 mm(2)/ s),倾点(-1摄氏度)和闪蒸还将合成生物柴油的最高温度(153摄氏度)与美国材料化学学会(ASTM)D6751标准进行了比较,并在极限范围内。

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