首页> 外文期刊>Journal of the American Oil Chemists' Society >Structure and physical properties of plant wax crystal networks and their relationship to oil binding capacity.
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Structure and physical properties of plant wax crystal networks and their relationship to oil binding capacity.

机译:植物蜡晶体网络的结构和物理性质及其与油结合能力的关系。

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摘要

The microstructure, melting and crystallization behavior, rheological properties and oil binding capacity of crystalline networks of plant-derived waxes in edible oil were studied and then compared amongst different wax types. The critical concentrations for oleogelation of canola oil by rice bran wax (RBX), sunflower wax, candelilla wax, and carnauba wax were 1, 1, 2, and 4 %, respectively, suggesting RBX and sunflower wax are more efficient structurants. A phenomenological two-phase exponential decay model was implemented to quantify the oil-binding capacity of these oleogels. Parameters obtained from this empirical model were then evaluated against microscale structural attributes such as crystal size, mass distribution and porosity to determine the structural dependence of oil-binding capacity. Gels containing candelilla wax exhibited the greatest oil-binding capacity, as they retained nearly 90 % of their oil. This is due to the small crystal size as well as the spatial distribution of these crystals. Using a microscopic to macroscopic approach, this study examines how the structural characteristics unique to each wax and resulting oleogel system affect functionality and macroscopic behavior
机译:研究了植物蜡在食用油中的结晶网络的微观结构,熔融和结晶行为,流变特性和油结合能力,然后在不同蜡类型之间进行了比较。米糠蜡(RBX),向日葵蜡,小烛树蜡和巴西棕榈蜡对低芥酸菜子油的油凝胶化的临界浓度分别为1、1、2和4%,这表明RBX和向日葵蜡是更有效的结构剂。现象学的两相指数衰减模型被用来量化这些油分子的油结合能力。然后针对微观结构属性(例如晶体大小,质量分布和孔隙率)评估从该经验模型获得的参数,以确定油结合能力的结构依赖性。含有小烛树蜡的凝胶具有最大的油结合能力,因为它们保留了近90%的油。这是由于较小的晶体尺寸以及这些晶体的空间分布。本研究使用微观到宏观的方法,研究了每种蜡的独特结构特征以及由此产生的油凝胶系统如何影响功能和宏观行为

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