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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Esterification of Free Fatty Acids Derived from Waste Cooking Oil with Octanol: Process Optimization and Kinetic Modeling
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Esterification of Free Fatty Acids Derived from Waste Cooking Oil with Octanol: Process Optimization and Kinetic Modeling

机译:用辛醇酯化废食用油中游离脂肪酸的酯化:工艺优化和动力学建模

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摘要

The synthesis of lubricant-grade ester using waste cooking oil (WCO) as the primary feedstock is characterized in detail and optimized. WCO was initially hydrolyzed using Candida rugosa lipase to convert triglycerides into free fatty acids (FFA). Subsequently, the FFA were esterified with octanol by a heterogeneous catalytic reaction in batch mode. Both the hydrolysis and esterification steps were optimized in terms of relevant process parameters, employing the well-known response surface methodology. The final product was characterized by Fourier transform infrared and nuclear magnetic resonance spectroscopy. Moreover, a pseudo-homogeneous, second-order kinetic model was proposed and validated with respect to the transient conversion data for the esterification reaction under optimum operating conditions. The overall output of the present study is highly useful in the design and development of large-scale industrial flow reactors to produce biolubricant components using a domestic waste material as feedstock.
机译:使用废食用油(WCO)作为主要原料的润滑剂级酯的合成已得到详细描述和优化。首先使用皱纹假丝酵母脂肪酶水解WCO,将甘油三酸酯转化为游离脂肪酸(FFA)。随后,通过分批方式的非均相催化反应将FFA用辛醇酯化。水解和酯化步骤均根据相关工艺参数进行了优化,采用了众所周知的响应面方法。最终产物通过傅里叶变换红外和核磁共振波谱进行表征。此外,提出了拟均相的二阶动力学模型,并针对最佳操作条件下酯化反应的瞬时转化数据进行了验证。本研究的总产出在大规模工业流反应器的设计和开发中非常有用,该反应器使用生活垃圾作为原料生产生物润滑剂组分。

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