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首页> 外文期刊>World review of science, technology and sustainable development >Structural and compositional evaluation of waste cooking oil-algal oil biodiesel using FTIR and GC-FID for improved fuel properties
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Structural and compositional evaluation of waste cooking oil-algal oil biodiesel using FTIR and GC-FID for improved fuel properties

机译:使用FTIR和GC-FID的废料烹饪油藻油生物柴油的结构和组成评价,提高燃料特性

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摘要

Energy demand and need for sustainable sources for fuel production have resulted in the development of alternative fuel technologies. Waste cooking oil (WCO) and algal oil (AO) extracted from Chlorella variabilis have been transesterified to yield WCO biodiesel (WCOBD) and AO biodiesel (AOBD). The present study aims to produce biodiesel by blending optimised proportion (1.25%) of AO with WCO to get 1.25AO-WCO for making biodiesel with improved properties. The reaction conditions for transesterification of 1.25AO-WCO were augmented by response surface methodology tool to attain supreme fatty acid methyl ester (FAME) yield of 98%. Fourier transform infrared spectroscopy (FTIR) of 1.25AO-WCO BD were performed to prove the production of biodiesel and their FAME profile is determined using gas chromatography with flame ionisation detector (GC-FID). Properties of 1.25AO-WCO BD were determined for 1.25AO-WCO BD and observed to meet ASTM standards apart from exhibiting better properties than biodiesel made from 100% WCO.
机译:能源需求和对可持续燃料生产来源的需求导致了替代燃料技术的发展。已经酯交换酯化的废物烹饪油(WCO)和藻类油(AO)从小球藻Variabilis中酯化以产生WCO生物柴油(WCOBD)和AO生物柴油(AOBD)。本研究旨在通过将优化的比例(1.25%)与WCO混合来生产生物柴油以获得1.25ao-WCO,以使生物柴油改善性质。通过响应表面方法工具增强1.25aO-WCO酯交换的反应条件,以获得最高脂肪酸甲酯(名称)产率为98%。进行傅里叶变换红外光谱(FTIR)的1.25ao-WCO Bd以证明生物柴油的产生,并且使用与火焰电离检测器(GC-FID)的气相色谱法测定它们的名称曲线。 1.25ao-WCO BD的性质测定1.25ao-WCO BD,观察到以满足ASTM标准,除了从100%WCO制造的生物柴油比生物柴油的表现出来。

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