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Density, refractive index and viscosity as content monitoring tool of acylglycerols and fatty acid methyl esters in the transesterification of soybean oil

机译:密度,折光率和粘度作为大豆油酯交换反应中酰基甘油和脂肪酸甲酯含量监测的工具

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The growing interest in research and development for alternative biofuels has drawn special attention to biodiesel, a mixture of fatty acid methyl esters (FAMEs) that can be obtained by the transesterification reaction of triacylglycerols (TAGs) with a short chain alcohol. During transesterification reaction kinetic studies, it is important to monitor the levels of diacylglycerols (DAGs) and monoacylglycerols (MAGs), as well as those of TAGs and FAMEs. These contents are generally determined according to reference methods by GC-FID analysis. This technique is expensive and time consuming, not to mention that samples with higher TAG contents can be harmful to the chromatography column and accessories. In this context, this study aims to determine the composition of a quaternary system, in which virtually only the four compounds cited previously are present, using a single-step chemometrics analysis that uses mathematical modelling to correlate the composition with three physical properties (density, refractive index and viscosity) of the same sample, one at a time. Subsequently, a sample with an unknown composition has the same properties determined and then a system of equations composed of three equations (one for each physical property) with three unknowns are solved to determine the unknown sample's composition. This method can be used as an initial screening method to determine both the TAG and FAME content in a sample, to be implemented prior to the performance of the GC analysis, because the results obtained in this study have shown that the approach proposed was able to determine mass fractions of quaternary systems with both a Mean Absolute Error (MAE) and Root Mean Square Deviation (RMSD) of less than 0.03.
机译:人们对替代生物燃料的研发兴趣日益浓厚,特别引起了人们对生物柴油的关注。生物柴油是脂肪酸甲酯(FAME)的混合物,可以通过三酰基甘油(TAG)与短链醇的酯交换反应获得。在酯交换反应动力学研究过程中,重要的是监测二酰基甘油(DAG)和单酰基甘油(MAG)以及TAG和FAME的水平。这些含量通常根据参考方法通过GC-FID分析确定。此技术既昂贵又费时,更不用说具有较高TAG含量的样品可能会对色谱柱和附件造成危害。在此背景下,本研究旨在确定一步系统的组成,其中实际上仅存在前面提到的四种化合物,这是使用一步化学计量分析进行的,该分析使用数学建模将组成与三个物理性质(密度,折射率和粘度)一次,一次。随后,具有未知成分的样品具有确定的相同属性,然后求解由具有三个未知量的三个方程式组成的方程组(每个物理性质一个),以确定未知样品的成分。该方法可以用作确定样品中TAG和FAME含量的初始筛选方法,该方法将在进行GC分析之前实施,因为本研究获得的结果表明所提出的方法能够确定均值绝对误差(MAE)和均方根偏差(RMSD)均小于0.03的四元系统的质量分数。

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