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Optimization of biodiesel production from waste fish oil

机译:从废鱼油中生产生物柴油的优化

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The present study deals with the production of biodiesel using waste fish oil. The research assesses the effect of the transesterification parameters on the biodiesel yield and its properties, including temperature (40-60 ℃), molar ratio methanol to oil (3:1-9:1) and reaction time (30-90 min). The experimental results were fitted to complete quadratic models and optimized by response surface methodology. All the biodiesel samples presented a FAME content higher than 93 vvt.% with a maximum, 95.39 wt.%, at 60 ℃, 9:1 of methanol to oil ratio and 90 min. On the other hand, a maximum biodiesel yield was found at the same methanol to oil ratio and reaction time conditions but at lower temperature, 40 ℃, which reduced the saponification of triglycerides by the alkaline catalyst employed. Adequate values of kinematic viscosity (measured at 30 ℃) were obtained, with a minimum of 6.30 mm~2/s obtained at 60 ℃, 5.15:1 of methanol to oil ratio and 55.52 min. However, the oxidative stability of the biodiesels produced must be further improved by adding antioxidants because low values of IP, below 2.22 h, were obtained. Finally, satisfactory values of completion of melt onset temperature, ranging from 3.31 ℃ to 3.83 ℃, were measured.
机译:本研究涉及使用废鱼油生产生物柴油。该研究评估了酯交换参数对生物柴油收率及其性质的影响,包括温度(40-60℃),甲醇与油的摩尔比(3:1-9:1)和反应时间(30-90分钟)。将实验结果拟合为完整的二次模型,并通过响应面方法进行了优化。所有生物柴油样品在60℃,甲醇与油的比例为9:1和90分钟时的FAME含量均高于93 vvt。%,最高为95.39 wt。%。另一方面,在相同的甲醇/油比和反应时间条件下,但在较低的温度(40℃)下,发现了最大的生物柴油收率,这降低了所用碱性催化剂对甘油三酸酯的皂化作用。获得了足够的运动粘度值(在30℃下测量),在60℃下获得的最小值为6.30 mm〜2 / s,甲醇与油的比例为5.15:1,并且为55.52分钟。但是,由于获得了低于2.22 h的低IP值,因此必须通过添加抗氧化剂进一步提高所生产生物柴油的氧化稳定性。最后,测得令人满意的熔融起始温度范围为3.31℃至3.83℃。

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