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Non-aqueous Virgin Coconut Oil Hair Gel

机译:非含水野生椰子油凝胶

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摘要

Virgin coconut oil (VCO) is gaining wide popularity in the scientific field and among the public. The purpose of this research was to develop the non-aqueous hair gel by dispersing hydrophilic colloidal silicon dioxide (Aerosil 200) or hydrophobic colloidal silicon dioxide (Aerosil R 972) into virgin coconut oil and to determine the effect of Aerosil type on physical properties of prepared hair gel. Texture analysis and satisfied evaluation of prepared system were also conducted. At a suitable amount of Aerosil 200 and Aerosil R 972, the three-dimensional network led to the immobilization of a dispersing medium. The viscosity of the prepared gel was increased as the amount of Aerosil 200 or Aerosil R 972 was increased. However, the viscosity of gel containing Aerosil 200 was apparently higher than system prepared from Aerosil R 972. The rheological behavior of these gels depended on type and concentration of colloidal silicon dioxide. From texture analysis, the hardness and adhesion of systems comprising Aerosil 200 were higher than that containing Aerosil R 972 with concentration dependence. Satisfied evaluation by a panel consisting of human volunteers demonstrated that the developed non-aqueous virgin coconut oil gel could be used as the hair setting gel.
机译:维珍椰子油(VCO)在科学领域和公众中取得了广泛的普及。本研究的目的是通过将亲水性胶体二氧化硅(Aerosil 200)或疏水性胶体二氧化硅(Aerosil R 972)分散到原始椰子油中,并确定Aerosil类型对物理性质的影响来开发非水毛发凝胶制备的毛胶。还进行了对制备系统的纹理分析和满足评估。在适当的Aerosil 200和Aerosil R 972,三维网络导致分散介质的固定。随着Aerosil 200或Aerosil R 972的量增加,所制备的凝胶的粘度增加。然而,含有Aerosil 200的凝胶的粘度明显高于由Aerosil R 972制备的系统。这些凝胶的流变行为依赖于胶体二氧化硅的类型和浓度。从纹理分析,包含Aerosil 200的系统的硬度和粘附高于含有浓度依赖性的含有Aerosil R 972的体系的硬度和粘附。由人类志愿者组成的面板的满意评估证明了开发的非含水原子椰子油凝胶可以用作染发凝胶。

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