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Production of biodiesel from food processing waste using response surface methodology

机译:使用响应面法从食品加工废料生产生物柴油

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The optimum conditions for biodiesel production by the transesterification of waste oil form the pork grilling process in the food factory in Udon Thani, Thailand, using NaOH and KOH as catalysts, has been investigated. A Box-Behnken Design (BBD) followed by a Response Surface Methodology (RSM) with 30 runs was used to assess the significance of three factors: the methanol to oil molar ratio, the amount of NaOH and KOH used, and the reaction time required to achieve the optimum percent fatty acid methyl ester (%FAME). The measured %FAME following transesterification using NaOH as a catalyst was an optimum 95.6% with a methanol to oil molar ratio of 12.2:1, a NaOH percentage mass fraction of 0.49% and a reaction time of 63 min. Using KOH as a catalyst, the %FAME was an optimum 93.0% with a methanol to oil molar ratio of 12: 1, a KOH percentage mass fraction of 0.61% and a reaction time of 72 min. The coefficient of determination (R-2) for regression equations were 98.55% and 93.99%, respectively. The probability value (P<0.05) demonstrated a very good significance for the regression model. The physicochemical properties of the biodiesel obtained from the waste oil met the ASTM 6751 biodiesel standard, illustrating that waste oil from the pork grilling process can be used as a raw material for biodiesel production by transesterification.
机译:已经研究了在泰国乌隆他尼的食品工厂中使用NaOH和KOH作为催化剂,通过猪肉烧烤过程中的废油进行酯交换反应生产生物柴油的最佳条件。使用Box-Behnken设计(BBD),然后进行30次运行的响应表面方法(RSM)来评估三个因素的重要性:甲醇与油的摩尔比,所用的NaOH和KOH的量以及所需的反应时间以获得最佳的脂肪酸甲酯百分比(%FAME)。使用NaOH作为催化剂进行酯交换反应后,测得的%FAME最佳为95.6%,甲醇与油的摩尔比为12.2:1,NaOH的质量分数为0.49%,反应时间为63分钟。使用KOH作为催化剂,%FAME的最佳比例为93.0%,甲醇与油的摩尔比为12:1,KOH的质量分数为0.61%,反应时间为72分钟。回归方程的确定系数(R-2)分别为98.55%和93.99%。概率值(P <0.05)对回归模型具有很好的意义。从废油中获得的生物柴油的理化特性符合ASTM 6751生物柴油标准,这表明来自猪肉烧烤过程的废油可用作酯交换反应生产生物柴油的原料。

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