Mollica Fabio, Lucarini Marco, Passerini Cinzia, Carati Claudio, Pavoni Silvia, Bonoldi Lucia, Amorati Riccardo
Department of Chemistry "G. Ciamician", University of Bologna, Via S. Giacomo 11, 40126 Bologna, Italy.
Research and Technological Innovation Department, Eni SpA, Via F. Maritano 26, I-20097 San Donato Milanese, Italy.
Antioxidants (Basel). 2020 May 8;9(5):399. doi: 10.3390/antiox9050399.
Bio-oils employed for various industrial purposes, such as biodiesel production, undergo extensive oxidation and degradation during transformation processes. Therefore, it is extremely important to predict their stability at high temperature. We report herein a new procedure based on the optically detected profile of headspace O concentration during isotherms at 130 °C for evaluating the oxidation kinetic parameters of several bio-oil feedstocks. The slope of O consumption and the induction period duration were related to the oil characteristics (molecular structure, acidity, and presence of intrinsic antioxidants or metals). The increase of the induction time caused by a standardized propyl gallate addition yielded a semiquantitative value of radical generation rate. Investigated oils included used cooking oils; mono-, di-, and triglycerides from natural sources; free fatty acids; transesterified oils; and their blends. With respect to other methods, this characterization presents the advantage of disentangling and evaluating the role of both fatty acids composition and naturally occurring antioxidants, and allows the development of rational strategies for antioxidant protection of oils and of their blends.
用于各种工业目的(如生物柴油生产)的生物油在转化过程中会经历广泛的氧化和降解。因此,预测它们在高温下的稳定性极其重要。我们在此报告一种基于在130°C等温线期间顶空O浓度的光学检测曲线来评估几种生物油原料氧化动力学参数的新方法。O消耗的斜率和诱导期持续时间与油的特性(分子结构、酸度以及内在抗氧化剂或金属的存在)有关。由标准化的没食子酸丙酯添加导致的诱导时间增加产生了自由基生成速率的半定量值。研究的油包括废食用油;天然来源的单、二和甘油三酯;游离脂肪酸;酯交换油;以及它们的混合物。相对于其他方法,这种表征具有区分和评估脂肪酸组成和天然存在的抗氧化剂的作用的优点,并允许制定合理的策略来对抗氧化油及其混合物进行保护。