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Fast sequential determination of manganese and chromium in vegetable oil and biodiesel samples by high-resolution continuum source graphite furnace atomic absorption spectrometry

机译:高分辨率连续源石墨炉原子吸收光谱法快速连续测定植物油和生物柴油样品中的锰和铬

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A fast method for the sequential determination of Mn and Cr in vegetable oil and biodiesel samples using high-resolution continuum source graphite furnace atomic absorption spectrometry (HR-CS GF AAS) was developed. Propan-1-ol, propanone and methyl isobutyl ketone (MIBK) were evaluated as solvents for diluting the samples in different proportions to reduce the viscosity of the samples. MIBK was established as a diluent in a proportion of 40% (v/v). All measurements for the determination of Mn and Cr were performed sequentially using their main atomic lines at 279.4817 and 357.8687 nm, respectively. Two atomization temperatures were used sequentially, 1900 and 2500 degrees C for Mn and Cr, respectively, due to differences in their volatilities. Mg was employed as a modifier to avoid the loss of Cr and to obtain the best conditions for pyrolysis and atomization. The developed method allowed for the sequential determination of both metals in different types of vegetable oil and biodiesel samples, and it presented limits of quantification of 4.48 and 3.57 ng g(-1) for Mn and Cr, respectively. Addition and recovery tests were performed, and the results ranged from 79 to 108% for Mn and from 79 to 115% for Cr. The matrix effect was evaluated by comparing organic and aqueous calibration curves, and the results indicated that external calibration was possible. Vegetable oil and biodiesel samples were analyzed by the proposed method and another procedure using acid digestion, and the results from the two methods were consistent. The proposed method was applied for the determination of Mn and Cr in commercial vegetable oil and biodiesel samples produced from soybean, canola, sunflower and corn.
机译:建立了一种使用高分辨率连续源石墨炉原子吸收光谱法(HR-CS GF AAS)连续测定植物油和生物柴油样品中Mn和Cr的快速方法。丙-1-醇,丙酮和甲基异丁基酮(MIBK)被评估为不同比例稀释样品以降低样品粘度的溶剂。 MIBK被确定为40%(v / v)的稀释剂。用于测定Mn和Cr的所有测量分别使用其主原子线分别在279.4817和357.8687 nm处依次进行。由于挥发度的不同,依次使用了两个雾化温度,分别是1900和2500℃的Mn和Cr。镁用作改性剂可避免Cr的损失,并获得最佳的热解和雾化条件。所开发的方法允许对不同类型的植物油和生物柴油样品中的两种金属进行顺序测定,并提出了Mn和Cr的定量限分别为4.48和3.57 ng g(-1)。进行了添加和恢复测试,Mn的结果范围为79%至108%,Cr的结果范围为79%至115%。通过比较有机和水性校准曲线评估基质效应,结果表明可以进行外部校准。通过提出的方法和另一种使用酸消解的方法对植物油和生物柴油样品进行了分析,两种方法的结果是一致的。该方法可用于测定大豆,油菜籽,向日葵和玉米制得的商业植物油和生物柴油样品中的锰和铬。

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