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Influence of surface-active phenolic acids and aqueous phase ratio on w/o nano-emulsions properties; model fitting and prediction of nano-emulsions oxidation stability

机译:表面活性酚酸和水相比对w / o纳米乳液性能的影响;模型拟合和纳米乳液氧化稳定性预测

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The purpose of this study was to explore the influence of emulsion composition (with regards to aqueous phase ratio and incorporated antioxidant compounds) on the formulation and stability of water in extra virgin olive oil nano-emulsions. Two aqueous phase ratios (2% w/w and 3% w/w) and three olive oil endogenous phenolic compounds (vanillic, caffeic and syringic acid), incorporated in the aqueous phase, were tested in order to evaluate their effect on emulsion properties and colloidal and oxidation stability. Additionally, nonlinear regression method was employed to generate a model, as well as to predict and test hypotheses of the emulsions mean droplet diameter effect on their oxidation index. The experimental results proved that the aqueous phase ratio plays a crucial role in nano-emulsion formulation, with increasing ratio leading to degradation of all the examined emulsion properties. Moreover, the addition of the olive oil endogenous phenolic compounds in the aqueous phase resulted in improved kinetic and oxidation stability of the water-in-oil (w/o) nano-emulsions. From the tested phenolic compounds, caffeic acid appeared to be the most effective. In fact, the nano-emulsion with 2% w/w aqueous phase with incorporated caffeic acid showed the highest emulsion stability (92%), oxidation stability (33.6 h) and the lowest mean droplet diameter (251 nm), polydispersity (0.32) and turbidity (172 NTU). (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是探讨乳液成分(关于水相比例和掺入的抗氧化剂化合物)对特级初榨橄榄油纳米乳液中水的配方和稳定性的影响。测试了两种水相比例(2%w / w和3%w / w)和三种橄榄油内源酚类化合物(香草酸,咖啡因和丁香酸),以评估它们对乳液性能的影响以及胶体和氧化稳定性。另外,采用非线性回归方法生成模型,以及预测和检验乳剂平均液滴直径对其氧化指数的影响的假设。实验结果证明,水相比例在纳米乳液配方中起着至关重要的作用,随着比例的增加,导致所有被检测乳液性能的下降。此外,在水相中添加橄榄油内源酚类化合物可改善油包水型纳米乳液的动力学和氧化稳定性。从测试的酚类化合物来看,咖啡酸似乎是最有效的。实际上,掺有咖啡酸的水相含量为2%w / w的纳米乳液显示出最高的乳液稳定性(92%),氧化稳定性(33.6 h)和最低的平均液滴直径(251 nm),多分散性(0.32)和浊度(172 NTU)。 (C)2017 Elsevier Ltd.保留所有权利。

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