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On-line monitoring of the transesterification reaction carriedudout in microreactors using near infrared spectroscopy

机译:在线监测所进行的酯交换反应使用近红外光谱仪在微反应器中分离

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摘要

Biodiesel can be produced from vegetable oils, animal fats, and waste cooking oils by transesterification with ethanol (also called ethanolysis) in order to substitute fossil fuels. In this work, the batch ethanolysis of high oleic sunflower oil was transferred into a continuous microstructured device, which induces a better control of heat and mass transfers. Various parameters were studied, notably the initial ethanol to oil molar ratio. An innovative method using NIR spectroscopy was also developed to on-line monitor the transesterification reaction of high oleic sunflower oil with ethanol in microreactors (circular PFA tube 1/1600 OD, 0.0200 ID). The reactions were monitored directly in the microreactors through sequential scans of the reaction medium by the means of an adequate probe. The asset of the method is that no sample collection or preparation is necessary. Partial Least Squares regression was used to develop calibration and prediction models between NIR spectral data and analytical data obtained by a reference method (gas chromatography with flame ionization detection, GC–FID). This method is fast, safe, reliable, nondestructive and inexpensive contrary to conventional procedures, such as gas chromatography and highudperformance liquid chromatography generally used to determine the composition of crude transesterification medium.
机译:生物柴油可以通过与乙醇进行酯交换反应(也称为乙醇分解)而由植物油,动物脂肪和废食用油制得,以替代化石燃料。在这项工作中,将高油酸葵花籽油的批量乙醇分解转移到连续的微结构装置中,从而可以更好地控制传热和传质。研究了各种参数,特别是初始乙醇与油的摩尔比。还开发了一种使用近红外光谱的创新方法来在线监测高油酸向日葵油与乙醇在微型反应器中的酯交换反应(圆形PFA管1/1600 OD,0.0200 ID)。通过适当的探针对反应介质进行顺序扫描,可以直接在微反应器中监测反应。该方法的优点是不需要样品收集或准备。偏最小二乘回归用于建立NIR光谱数据与通过参考方法(带有火焰离子化检测的气相色谱,GC-FID)获得的分析数据之间的校准和预测模型。与常规方法,例如通常用于确定粗酯交换介质的组成的气相色谱法和高效液相色谱法相反,该方法是快速,安全,可靠,无损且廉价的。

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