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Simultaneous determination of hydrocarbon renewable diesel, biodiesel and petroleum diesel contents in diesel fuel blends using near infrared (NIR) spectroscopy and chemometrics

机译:用近红外线(NIR)光谱法和化学计量学用柴油燃料混合物中烃可再生柴油,生物柴油和石油柴油含量的同时测定

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摘要

Highly polluting fuels based on non-renewable resources such as fossil fuels need to be replaced with potentially less polluting renewable fuels derived from vegetable or animal biomass, these so-called biofuels, are a reality nowadays and many countries have started the challenge of increasing the use of different types of biofuels, such as ethanol and biodiesel (fatty acid alkyl esters), often mixed with petroleum derivatives, such as gasoline and diesel, respectively. The quantitative determination of these fuel blends using simple, fast and low cost methods based on near infrared (NIR) spectroscopy combined with chemometric methods has been reported. However, advanced biofuels based on a mixture of hydrocarbons or a single hydrocarbon molecule, such as farnesane (2,6,10-trimethyldodecane), a hydrocarbon renewable diesel, can also be used in mixtures with biodiesel and petroleum diesel fuel and the use of NIR spectroscopy for the quantitative determination of a ternary fuel blend of these two hydrocarbon-based fuels and biodiesel can be a useful tool for quality control. This work presents a development of an analytical method for the quantitative determination of hydrocarbon renewable diesel (farnesane), biodiesel and petroleum diesel fuel blends using NIR spectroscopy combined with chemometric methods, such as partial least squares (PLS) and support vector machines (SVM). This development leads to a more accurate, simpler, faster and cheaper method when compared to the standard reference method ASTM D6866 and with the main advantage of providing the individual quantification of two different biofuels in a mixture with petroleum diesel fuel. Using the developed PLS model the three fuel blend components were determined simultaneously with values of root mean square error of prediction (RMSEP) of 0.25%, 0.19% and 0.38% for hydrocarbon renewable diesel, biodiesel and petroleum diesel, respectively, the values obtained were in agreement with those suggested by reference methods for the determination of renewable fuels.
机译:基于非可再生资源的高度污染燃料,如化石燃料,需要替代来自蔬菜或动物生物质的潜在较少的污染可再生燃料,这些所谓的生物燃料是现在的现实,许多国家已经开始增加挑战使用不同类型的生物燃料,例如乙醇和生物柴油(脂肪酸烷基酯),通常分别与石油衍生物(例如汽油和柴油)混合。已经报道了使用基于近红外(NIR)光谱法与化学计量方法的简单,快速和低成本方法的定量测定这些燃料共混物。然而,基于碳氢化合物或单个烃分子的混合物的先进生物燃料,例如法式烷(2,6,10-三甲基二甲烷),烃可再生柴油,也可用于与生物柴油和石油柴油燃料的混合物和使用用于定量测定这两个烃类燃料和生物柴油的三元燃料混合物的定量测定的荧光光谱可以是质量控制的有用工具。本作品介绍了使用NIR光谱与化学计量方法联合的碳氢化合物可再生柴油(法内拌),生物柴油和石油柴油燃料混合物进行定量测定的分析方法,例如局部最小二乘(PLS)和支撑载体机(SVM) 。与标准参考方法ASTM D6866相比,这种发展导致更准确,更简单,更快,更便宜的方法,并且主要优点是在与石油柴油燃料中的混合物中提供两个不同的生物燃料的各个定量。使用开发的PLS型号,分别与烃可再生柴油,生物柴油和石油柴油的预测(RMSEP)的均线平均误差值同时测定三种燃料混合物组分分别为0.25%,0.19%和0.38%,所获得的值同意参考方法建议的那些用于确定可再生燃料的方法。

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