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Application of D-optimal design and RSM to optimize the transesterification of waste cooking oil using natural and chemical heterogeneous catalyst

机译:D最佳设计和RSM的应用,使用天然和化学非均相催化剂优化废食用油的酯交换反应

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This work illustrates a comparative study on the applicability of the natural calcium oxide (CaO) prepared from waste eggshells and chemical CaO as basic heterogeneous catalyst in the transesterification of waste cooking oil (WCO) with methanol for production of biodiesel. Response surface methodology (RSM) based on D-optimal design of experiments was employed to study the significance and interactive effect of methanol-to-oil (M:O) molar ratio, catalyst concentration, reaction time, and mixing rate on biodiesel yield. Second-order quadratic model equations were obtained describing the interrelationships between dependent and independent variables to maximize the response variable (biodiesel yield) and the validity of the predicted models were confirmed. The activity of the produced natural biocatalyst was comparable to that of chemical CaO, producing high yield of biodiesel approximate to 91 and 98% at 8.57:1 M:O, 3.99 catalyst wt%, 31 min reaction time, and 398.88 rpm mixing rate at 60 degrees C, respectively. Fuel properties of the produced biodiesel were measured and compared with those of Egyptian petro-diesel and international biodiesel standards. The overall biodiesel characteristics either prepared using natural or chemical CaO were comparable and acceptable, encouraging the application of CaO prepared from waste eggshells for production of biodiesel as an efficient, environmentally friendly, sustainable, and low cost heterogeneous catalyst.
机译:这项工作说明了由废蛋壳和化学CaO制成的天然氧化钙(CaO)作为基本多相催化剂在废烹饪油(WCO)与甲醇进行酯交换反应生产生物柴油中的适用性的比较研究。采用基于D-最优设计实验的响应面方法(RSM)研究了甲醇与油(M:O)摩尔比,催化剂浓度,反应时间和混合速率对生物柴油收率的意义和相互作用。获得了二次方程模型方程,该方程描述了因变量和自变量之间的相互关系以最大化响应变量(生物柴油产量),并确认了预测模型的有效性。所产生的天然生物催化剂的活性与化学CaO相当,在8.57:1 M:O,3.99 wt%的催化剂,31分钟的反应时间和398.88 rpm的混合速率下,生物柴油的高产率分别约为91和98%。分别为60摄氏度。测量了所生产的生物柴油的燃料特性,并将其与埃及石油柴油和国际生物柴油标准的燃料特性进行了比较。使用天然或化学CaO制备的总体生物柴油特性具有可比性并且可以接受,这鼓励了将由废蛋壳制备的CaO应用于生产生物柴油,将其作为一种高效,环保,可持续和低成本的多相催化剂。

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