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Optimization of biodiesel synthesis from microalgal (Spirulina platensis) oil by using a novel heterogeneous catalyst, β-strontium silicate (β-Sr_2SiO_4)

机译:使用新型异构催化剂,β-锶硅酸盐(β-SR_2SIO_4)优化微藻(螺旋藻)油的生物柴油合成。

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摘要

The beta-Strontium silicate (beta -Sr2SiO4) was synthesized by physicochemical methods and was used as a heterogeneous catalyst in biodiesel production from microalgal oil (-Spirulina platensis) by transesterification process. The physical and chemical properties of the catalyst were analysed using TGA, XRD, ATR-FTIR, SEM-EDX, and surface area analyser. XRD and FTIR analyses confirmed the formation of beta-Sr2SiO4 which was able to perform transeterification reaction. Several reaction parameter such as catalyst wt %, molar ratio (methanol :oil) and time have been optimized for transesterification reaction. The optimization of reaction parameters was accomplished by response surface methodology based on Box-Behnken design. Reusability study of catalyst was accomplished up to six run with 76.34% fatty acid methyl ester (FAME) conversion. A 97.88% maximum FAME conversion was observed at 65 degrees C, 600 rpm, 2.5 we/o catalyst, 1:12 methanol to oil molar ratio and 104 min reaction time.The biodiesel properties conform to ASTM standards.
机译:通过物理化学方法合成β-硅酸盐(β-SR2SIO4),通过酯交换方法从微藻( - 股票峰)中使用的生物柴油生产中的非均相催化剂。使用TGA,XRD,ATR-FTIR,SEM-EDX和表面积分析仪分析催化剂的物理和化学性质。 XRD和FTIR分析证实了能够进行横切反应的β-SR2SIO4的形成。几种反应参数如催化剂Wt%,摩尔比(甲醇:油)和时间已经针对酯交换反应进行了优化。基于Box-Behnken设计的响应表面方法完成了反应参数的优化。催化剂的可重用性研究最多可实现六次脂肪酸甲酯(DAME)转化。在65摄氏度,600rpm,2.5WE / O催化剂,1:22甲醇与油摩尔比和104分钟反应时间内观察到97.88%的最大成分转化转化。生物柴油属性符合ASTM标准。

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