Ogawa Shigesaburo, Ono Maya, Sugano Shogo, Nakano Teruyuki, Niwa Koichi
Department of Food, Aroma and Cosmetic Chemistry, Faculty of Bio-industry, Tokyo University of Agriculture.
Boso Oil & Fat Co., Ltd.
J Oleo Sci. 2025;74(7):567-576. doi: 10.5650/jos.ess25066.
The development of an optimal material design is crucial for rice bran wax (RBW) to achieve significant advancements in value-added byproducts. In this study, emulsifier-free, submicron-sized, monodisperse RBW particles were prepared via melt emulsification using a combination of a high-HLB emulsifier-decaglycerin stearate or Tween 20-and a low-HLB emulsifier-glyceryl stearate or Span 20. High dispersibility was achieved due to the zeta-potential generated by the surrounding surfactants, resulting in monodispersed submicron-sized RBW particles. Surface cleaning with ethanol effectively removed surface-adsorbed emulsifiers, yielding emulsion-free RBW particles. Due to the hydrophobic nature of the wax particles, high solvent repellencies were observed, along with the formation of colloidal assemblies such as liquid marbles and W/O Pickering emulsions using cosmetics-applicable liquids. Based on X-ray diffraction analysis and differential scanning calorimetry, RBW was identified as a promising candidate for emulsifier-free submicron-sized particles due to its high crystallinity, which facilitates the effective elimination of emulsifiers.
开发一种优化的材料设计对于米糠蜡(RBW)在增值副产品方面取得重大进展至关重要。在本研究中,通过熔融乳化法,使用高HLB值乳化剂(十聚甘油硬脂酸酯或吐温20)和低HLB值乳化剂(硬脂酸甘油酯或司盘20)的组合制备了无乳化剂、亚微米尺寸、单分散的RBW颗粒。由于周围表面活性剂产生的ζ电位,实现了高分散性,从而得到单分散的亚微米尺寸RBW颗粒。用乙醇进行表面清洗有效地去除了表面吸附的乳化剂,得到了无乳液的RBW颗粒。由于蜡颗粒的疏水性,观察到了高溶剂排斥性,以及使用适用于化妆品的液体形成了诸如液滴弹和W/O型皮克林乳液等胶体聚集体。基于X射线衍射分析和差示扫描量热法,RBW因其高结晶度而被确定为无乳化剂亚微米尺寸颗粒的有前途的候选材料,这有利于有效去除乳化剂。