Synthesis of biodiesel from waste recycled oil employing animal bone ash

F. C. Ozioko, D. E. Rockson-Itiveh, Mabel Keke, Tunde Folorunsho
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Abstract

In this work, physiochemical properties of the waste used oil (WUO) were carried out for its aptness for biodiesel production. Calcined Animal Bone was used as a bio-base catalyst for the biodiesel production. The produced biodiesel was characterized and the optimum biodiesel produced was determined via statistical analysis using regression analysis. This was with a view to adding value to the waste used oil (WUO) and finding environmentally friendly alternative to fossil fuel. Waste used oil (WUO) was preheated and purified to clean oil via filtration, and the physiochemical and other parameters (cetane number, API, aniline point among others) the cleaned oil were determined using standard methods. The Calcined animal bone was characterized using FTIR, SEM, XRF, BET adsorption, and qualitative analysis. Biodiesel production was done via base catalyst trans- esterification while statistical analysis was done using Microsoft Excel 8.0. In order to ascertain the quality of the biodiesel, the physicochemical properties were determined and the qualities were compared with ASTM D6751 and EN 14214. Results showed that the refined WUO properties were in line with property of oil require for biodiesel production. The physicochemical characteristics of the WUO showed physical state of the oil to be liquid/dark brownish at 28oc, viscosity 6.58 cP at 28 0C, acid value, 0.96 (mg KOH/g oil), FFA (% oleic acid), 0.48, iodine value, 152.00 (g I2/100 g oil), peroxide value, 5.1 milli-equivalent of peroxide/kg of oil among others. The derived catalyst showed high basic strength with Calcium oxide (87.63 wt.%) 0s the dominant element in the catalyst. Optimum biodiesel yield was obtained at run 5 with 98.52 (%wt./wt.) at reaction time of 30 min, catalyst amount of 2.0 (%wt.), reaction temperature of 100 0C, and ethanol-oil molar ratio of 4:1. The produced biodiesel properties conformed to the recommended standard ASTM D6751 and EN 14214. The study concluded that WUO could serve as feedstock for biodiesel production that is environmentally friendly and the derived catalyst could be used as a bio-base in catalytic industries.
利用动物骨灰从废再生油中合成生物柴油
研究了废油的理化性质,以确定其适合生产生物柴油。以煅烧动物骨为生物碱催化剂,制备生物柴油。对所得生物柴油进行了表征,并利用回归分析的方法对所得生物柴油进行了统计分析。这是为了增加废油(WUO)的价值,并找到对环境友好的化石燃料替代品。对废油(WUO)进行预热提纯,过滤净化后,采用标准方法测定净化后的油的理化参数(十六烷值、API、苯胺点等)。利用FTIR、SEM、XRF、BET吸附和定性分析对煅烧动物骨进行了表征。采用碱催化反式酯化法生产生物柴油,采用Microsoft Excel 8.0进行统计分析。为了确定生物柴油的质量,测定了生物柴油的理化性质,并与ASTM D6751和EN 14214进行了比较。结果表明,精制后的油的性质符合生产生物柴油所需的油的性质。该油的理化性质为:28℃时为液体/深褐色,28℃时粘度为6.58 cP,酸值为0.96 (mg KOH/g油),FFA(%油酸)为0.48,碘值为152.00 (g I2/100 g油),过氧化值为5.1毫当量/kg油等。所得催化剂具有较高的碱性强度,氧化钙(87.63 wt.%)是催化剂的主要成分。反应时间为30 min,催化剂用量为2.0 (%wt.),反应温度为100℃,乙醇-油摩尔比为4:1,反应速率为98.52 (%wt./wt.)。生产的生物柴油性能符合推荐标准ASTM D6751和EN 14214。研究结果表明,WUO可作为环境友好型生物柴油的原料,衍生的催化剂可作为催化工业的生物碱。
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