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首页> 外文期刊>European Journal of Lipid Science and Technology >Correlation of structural characterization and viscosity measurements with total unsaturation: An effective method for controlling ozonation in the preparation of ozonated grape seed and sunflower oils
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Correlation of structural characterization and viscosity measurements with total unsaturation: An effective method for controlling ozonation in the preparation of ozonated grape seed and sunflower oils

机译:结构特征和粘度测量值与总不饱和度的相关性:控制臭氧化的有效方法,可用于制备臭氧化的葡萄籽和葵花籽油

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摘要

Ozonated oils have demonstrated promising results for clinical applications. The reaction of ozone with the unsaturated compounds of oils produces by-products such as ozonides and poly peroxides. A deeper knowledge of the dynamics of by-product formation is helpful in determining the required ozonation degree to obtain therapeutic effects. The aim of this paper is to show the relationship between ozonation degree and structural and viscosity changes during the ozonation of grape seed (GS) and sunflower (SF) oils. Structural characterization was done by Fourier transform infrared (FT-IR) and hydrogen-1 nuclear magnetic resonance (H-1 NMR) spectroscopy, with iso-ozonides being identified. Viscosity showed a significant increase during ozonation, a fact associated with poly peroxide formation. We have made use of the total unsaturation (TU) method to measure the ozonation degree. The TU of non-ozonated GS oil was found to be higher than for SF oil (5.94 and 4.49mmol per g of oil, respectively), and their by-product distributions were also found to differ. In GS oil, three reaction steps were observed for double-bond conversion into iso-ozonides and poly peroxides, while the ozonides and poly peroxides were formed in parallel in SF oil. The studies we implemented characterized the differences in the reactivities of these oils with ozone.
机译:臭氧油已证明可用于临床。臭氧与油类不饱和化合物的反应会产生副产物,例如臭氧化物和聚过氧化物。对副产物形成动力学的更深入了解有助于确定所需的臭氧化程度以获得治疗效果。本文的目的是显示在葡萄籽油(GS)和葵花籽油(SF)的臭氧化过程中,臭氧化程度与结构和粘度变化之间的关系。通过傅里叶变换红外(FT-IR)和氢-1核磁共振(H-1 NMR)光谱进行结构表征,并鉴定出异臭氧化物。在臭氧化过程中,粘度显着增加,这与聚过氧化物的形成有关。我们利用总不饱和度(TU)方法测量了臭氧度。发现非臭氧化GS油的TU高于SF油(分别为每克油5.94和4.49mmol),其副产物分布也有所不同。在GS油中,观察到三个反应步骤,可将双键转化为异臭氧化物和聚过氧化物,而臭氧化物和聚过氧化物则在SF油中平行形成。我们进行的研究表征了这些油与臭氧的反应性差异。

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