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首页> 外文期刊>Waste and biomass valorization >Utilization of Waste and Under-utilized Pongamia pinnata Seed Oil for Acquiring Maximal Process to Get Ameliorate Yield of Biodiesel Through Response Surface Methodology
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Utilization of Waste and Under-utilized Pongamia pinnata Seed Oil for Acquiring Maximal Process to Get Ameliorate Yield of Biodiesel Through Response Surface Methodology

机译:利用响应面方法研究废料和未充分利用的Pongamia pinnata籽油以获取最大工艺以获得生物柴油的最佳收率

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The aim of this study was to use the under-utilized vegetable seed oil and produce high and better yield of biodiesel. The response surface methodology (RSM) was used, based on central composite rotatable design (CCRD), to optimize four trans-esterification reaction variables for getting high yield: catalyst concentration (CC; 0.25-1.0 %), reaction temperature (RT; 45-65 A degrees C), CH3OH-to-oil molar ratio (6:1-12:1) and reaction time (30-90 min). The 2(4) full factorial CCRD design was applied, using four different parameters at five levels, each lead to 30 experiments to produce Pongamia pinnata oil-methyl esters (POMEs). The molar ratio of CH3OH to oil and RT were the most significant (p < 0.01) factors affecting the yield of POMEs. A linear relationship was recorded between the observed and predicted values (R (2) = 0.9744). Using multiple regression analysis a quadratic polynomial equation was recognized for methyl ester yield (MEY). The quadratic term of CC showed a significant (p < 0.0001) impact on esters yield. The interaction terms of CH3OH to oil molar ratio and CC with reaction time exhibited a +ve effect on the MEY (p < 0.05). The optimum reaction conditions for trans-esterification of oils were 6.1 CH3OH to oil ratio, 1.0 % CC, 65 A degrees C RT and 1:30 h reaction time, resulting in Pongamia oil MEY of 94.88 %. The RSM was found to be a suitable technique for optimizing trans-esterification process and produced fuel was within the ranges of ASTM D6751 and EN 14214 standards.
机译:这项研究的目的是使用未充分利用的植物种子油,并生产出更高且更高产量的生物柴油。基于中央复合可旋转设计(CCRD),使用了响应面方法(RSM)优化了四个酯交换反应变量以获得高收率:催化剂浓度(CC; 0.25-1.0%),反应温度(RT; 45) -65 A摄氏度),CH3OH与油的摩尔比(6:1-12:1)和反应时间(30-90分钟)。应用了2(4)全阶乘CCRD设计,在五个级别上使用四个不同的参数,每个参数都进行了30次实验,以生产樟子松油甲基酯(POMEs)。 CH3OH与油和RT的摩尔比是影响POMEs产量的最重要因素(p <0.01)。记录的观测值和预测值之间存在线性关系(R(2)= 0.9744)。使用多元回归分析,可以识别出甲酯含量(MEY)的二次多项式方程。 CC的二次项显示出对酯收率的显着(p <0.0001)影响。 CH3OH与油的摩尔比和CC随反应时间的相互作用对MEY表现出+ ve效应(p <0.05)。用于油的酯交换的最佳反应条件是6.1 CH3OH /油比,1.0%CC,65 A室温和1:30 h反应时间,得到的Pongamia油MEY为94.88%。发现RSM是用于优化酯交换过程的合适技术,并且产生的燃料在ASTM D6751和EN 14214标准的范围内。

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