Biodiesel Production From Sardine Flour Used Cooking Oil Using One Step Transesterification Techniques

A. Ernes, Poppy Diana Sari, R. S. Hartati, I. Winaya
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引用次数: 2

Abstract

Diesel oil demand as energy source at industrial, transportation and electric generating sector are increasing and it resulted with the decreasing of fossil energy source backup. Biodiesel as an alternative energy source to substitute diesel oil can be utilized from used fried oil of sardine flour. The purpose of this research was to develop the technology to convert used fried oil of sardine flour to become biodiesel using one step trans-esterification technic as an alternative of renewable energy source and also to utilize waste of used oil. Biodiesel made using one step trans-esterification technic with NaOH catalyst concentration 0.5; 1.0; 1.5; 2.0 (% m/m) from total weight of oil and methanol. Trans-esterification process run for 30, 60 and 90 minutes at 65 temperature. The biodiesel obtained was analyzed using gas chromatography and mass spectrometer (GC-MS). The quality was determined by comparing its physicochemical properties and compared to the SNI standard 04-7182-2015. The result of GC-MS showed 10 peaks corresponding to ten methyl ester (biodiesel): octanoic acid methyl ester; decanoic acid methyl ester; dodecanoic methyl ester; tridecanoic acid, 12-methyl-, methyl ester; pentadecanoic acid methyl ester; hexadecatrienoic acid methyl ester, 9-hexadecenoic acid methyl ester, 9-hexadecenoic acid methyl ester, trans-13-octadecenoic acid methyl ester, hexadecanoic acid methyl ester. The biodiesel obtained has a density of 908 kg/m3, viscosity of 3.13 mm2/s, acid value of 0.29 mg-KOH/g found in treatment 1.5% NaOH and time process of 60 minutes. Viscosity and acid value were in a good agreement with SNI standard 04-7182-2015. The research shows that used fried oil of sardine flour has possibility as biodiesel source. Keywords: Biodiesel; sardine flour used cooking oil; trans-esterification
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用一步酯交换技术从沙丁鱼面粉中提取食用油生产生物柴油
作为能源的柴油在工业、交通和发电领域的需求日益增加,这是化石能源后备减少的结果。以沙丁鱼粉煎炸后的废油为原料,利用生物柴油作为替代柴油的能源。本研究的目的是开发利用一步反式酯化技术将沙丁鱼粉煎过的油转化为生物柴油的技术,作为可再生能源的替代品,并利用废油。氢氧化钠浓度0.5催化一步反式酯化制备生物柴油1.0;1.5;2.0 (% m/m)从油和甲醇的总重量。反式酯化过程在65℃下运行30,60和90分钟。所得生物柴油采用气相色谱-质谱联用(GC-MS)进行分析。通过比较其物理化学性质并与SNI标准04-7182-2015进行比较来确定其质量。GC-MS结果显示10个峰对应10个甲酯(生物柴油):辛酸甲酯;癸酸甲酯;十二烷甲酯;十二甲基-三烷酸甲酯;十五酸甲酯;十六烯酸甲酯、9-十六烯酸甲酯、9-十六烯酸甲酯、反式13-十八烯酸甲酯、十六烯酸甲酯。所得生物柴油的密度为908 kg/m3,粘度为3.13 mm2/s, NaOH浓度为1.5%,处理时间为60 min,酸值为0.29 mg-KOH/g。粘度和酸值符合SNI标准04-7182-2015。研究表明,沙丁鱼粉用煎炸过的油有可能作为生物柴油的原料。关键词:生物柴油;沙丁鱼粉用食用油;trans-esterification
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