Synthesis of ZnO/CaO Catalyst from Eggshell Waste for Biodiesel Production

Dino Wicaksono, R. D. Kusumaningtyas
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Abstract

The diminishing of fossil fuel reserve has raised a consideration on the renewable energy development. Biodiesel is among the promising renewable energy which is feasible for large-scale production. Biodiesel is generally synthesized through the alkaline-catalyst transesterification of vegetable oil. The common catalyst for biodiesel is homogeneous base catalysts which are active but show several drawbacks related to the environmental aspects. Therefore, development of heterogeneous alkaline catalyst for biodiesel production is critical. CaO catalyst is considered a favourable heterogeneous base catalyst for transesterification reaction and it can be derived from various natural resources. In this work, CaO catalyst from eggshell was synthesized from eggshell waste. To improve the catalyst activity, CaO was combined with ZnO active metal, resulting ZnO/CaO catalyst. In this research, the development, characterization, and application of ZnO/CaO catalyst for waste cooking oil (WCO) transesterification to produce biodiesel has been investigated. Various concentration of ZnO was combined with CaO to determine the best formulation of ZnO/CaO catalyst development. It was demonstrated that the addition of ZnO active metal on CaO catalyst could remarkably improve the biodiesel yield through WCO transesterification reaction. The addition of 6% ZnO active metal on CaO, forming ZnO/CaO 6% catalyst, has exhibited the optimal enhancement of biodiesel yield. Furthermore, it was found that the optimum amount of ZnO/CaO 6% catalyst added in the reaction system was 3% w/w catalyst/WCO.
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蛋壳废弃物制备生物柴油用氧化锌/氧化钙催化剂的研究
化石燃料储量的减少引起了人们对可再生能源发展的思考。生物柴油是一种有前景的可再生能源,可大规模生产。生物柴油通常是通过植物油的碱性催化剂酯交换反应合成的。生物柴油的常见催化剂是均相碱催化剂,其是活性的,但显示出与环境方面有关的几个缺点。因此,开发用于生物柴油生产的多相碱性催化剂至关重要。CaO催化剂被认为是酯交换反应的一种有利的非均相碱催化剂,它可以从各种自然资源中获得。以蛋壳废料为原料,合成了蛋壳氧化钙催化剂。为了提高催化剂的活性,将CaO与ZnO活性金属结合,得到ZnO/CaO催化剂。本研究对用于废弃食用油酯交换生产生物柴油的ZnO/CaO催化剂的开发、表征和应用进行了研究。将不同浓度的ZnO与CaO结合以确定ZnO/CaO催化剂开发的最佳配方。结果表明,在CaO催化剂上添加ZnO活性金属可以显著提高WCO酯交换反应的生物柴油收率。在氧化钙上添加6%的氧化锌活性金属,形成ZnO/CaO6%的催化剂,对生物柴油收率的提高效果最佳。此外,发现在反应体系中加入ZnO/CaO6%催化剂的最佳量为3%w/w催化剂/WCO。
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