首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Fast and simple method for determination of fatty acid methyl esters (FAME) in biodiesel blends using X-ray spectrometry
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Fast and simple method for determination of fatty acid methyl esters (FAME) in biodiesel blends using X-ray spectrometry

机译:使用X射线光谱法测定生物柴油混合物中脂肪酸甲酯(FAME)的快速简便方法

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The determination of fatty acid methyl esters (FAME) in diesel fuel blends is an important aspect of production and blending process as well as quality control of distribution operations. In this study, energydispersive X-ray fluorescence spectrometer (EDXRF) is used for the first time for determination of FAME in biodiesel blends. The principle of the method is based on intensity difference of X-ray radiation scattered from hydrocarbons and from FAME. The experiment shows that coherent and incoherent radiation, commonly applied for evaluation of the average atomic number of the sample with light matrix, cannot be applied for FAME determination. However, the application of scattered continuous radiation gives excellent correlation between FAME concentration and intensity of scattered radiation. The best results are obtained if continuum is collected in the range of energy between 10.5 and 15.0 keV for rhodium X-ray tube, operated at 35 kV. Linear relationship between the FAME concentration and the inverse of scattered continuous radiation is obtained with the correlation coefficients of 0.999. Standard deviation of measurement is ca. 0.46% (v/v) of FAME and detection limit is 1.2% (v/v) for 600 s counting time and 50% dead-time loss using Si-PIN detector. The investigation shows that crucial issue in determination of FAME in biodiesel blends using EDXRF spectrometer is the precision of measurements resulting from the counting statistics. Therefore, much better results (0.20% (v/v) standard deviation and 0.52% (v/v) detection limit) can be expected if higher intensity of primary radiation is applied and X-ray spectrum is collected by silicon drift detector of high input count rate. For concentration of FAME from 10 to 100%(v/v), the differences between reference method (Fourier transform infrared spectrometry) and the proposed method usually do not exceed 1% (v/v) of FAME. The proposed method is fast, simple and enables FAME determination in wide range of concentration up to 100% of FAME without any sample treatment.
机译:柴油燃料混合物中脂肪酸甲酯(FAME)的测定是生产和混合过程以及分销运营质量控制的重要方面。在这项研究中,能量色散X射线荧光光谱仪(EDXRF)首次用于测定生物柴油混合物中的FAME。该方法的原理基于从碳氢化合物和FAME散射的X射线辐射的强度差。实验表明,通常用于评估带有光矩阵的样品的平均原子序数的相干和非相干辐射不能用于FAME测定。但是,散射连续辐射的应用在FAME浓度和散射辐射强度之间提供了极好的相关性。如果在35 kV下操作的铑X射线管的能量范围在10.5 keV至15.0 keV之间,则收集到的连续谱将获得最佳结果。 FAME浓度与散射连续辐射的倒数之间呈线性关系,相关系数为0.999。测量的标准偏差为。 FAME的0.46%(v / v),使用Si-PIN检测器的600 s计数时间和50%死区时间损失的检测极限为1.2%(v / v)。调查表明,使用EDXRF光谱仪测定生物柴油混合物中FAME的关键问题是计数统计所产生的测量精度。因此,如果应用更高强度的一次辐射并且通过高硅漂移检测器收集X射线光谱,则可以预期得到更好的结果(0.20%(v / v)标准偏差和0.52%(v / v)检测极限)输入计数率。对于浓度为10%至100%(v / v)的FAME,参考方法(傅里叶变换红外光谱法)与建议的方法之间的差异通常不超过FAME的1%(v / v)。所提出的方法快速,简单,并且无需任何样品处理即可在高达100%FAME的宽浓度范围内测定FAME。

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