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Process and apparatus for octane numbers and reid vapor pressure by Raman spectroscopy

机译:拉曼光谱法测定辛烷值和残余蒸气压的方法和装置

摘要

A Fourier-Transform Raman spectrometer was used to collect the Raman spectra of (208) commercial petroleum fuels. The individual motor and research octane numbers (MON and RON, respectively) were determined experimentally using the industry standard ASTM knock engine method. Partial Least Squares (PLS) regression analysis can be used to build regression models which correlate the Raman spectra (175) of the fuels with the experimentally determined values for MON, RON, and pump octane number (the average of MON and RON) of the fuels. Each of the models was validated using leave-one-out validation. The standard errors of validation (SEV) are 0.415, 0.535, and 0.410 octane numbers for MON, RON, and pump octane number, respectively. By comparing the standard error of validation to the standard deviation for the experimentally determined octane numbers, it is evident that the accuracy of the Raman determined values is limited by the accuracy of the training set used in creating the models. The Raman regression models were used to predict the octane numbers for the fuels which were not used to build the models. The results compare favorably with the leave-one-out validation. Also, it is demonstrated that the experimentally determined Reid Vapor Pressures are highly correlated with the Raman spectra of the fuel samples and can be predicted with a standard error of 0.568 psi.
机译:使用傅里叶变换拉曼光谱仪收集(208)商业石油燃料的拉曼光谱。使用工业标准ASTM爆震发动机方法,通过实验确定了各个电动机和研究辛烷值(分别为MON和RON)。偏最小二乘(PLS)回归分析可用于建立回归模型,该模型将燃料的拉曼光谱(175)与实验确定的MON,RON和泵的辛烷值(MON和RON的平均值)相关联。燃料。使用留一法验证对每个模型进行了验证。验证的标准误差(SEV)对于MON,RON和泵浦辛烷值分别为0.415、0.535和0.410辛烷值。通过将验证的标准误差与实验确定的辛烷值的标准偏差进行比较,很明显拉曼确定值的准确性受到创建模型时使用的训练集的准确性的限制。拉曼回归模型用于预测未用于构建模型的燃料的辛烷值。结果与留一法验证相比具有优势。另外,还证明了实验确定的里德蒸气压与燃料样品的拉曼光谱高度相关,并且可以以0.568 psi的标准误差进行预测。

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