Yang Jiang, Jiang Wei, Guan Baoshan, Qiu Xiaohui, Lu Yongjun
Department of Petroleum Engineering, Xi'an Petroleum University.
J Oleo Sci. 2014;63(11):1133-40. doi: 10.5650/jos.ess14041. Epub 2014 Oct 7.
D-limonene in water nanoemulsion is prepared from an optimum formulation by low energy process at room temperature. The phase behavior of d-limonene/isotridecanol ethoxylate-6/ isopropyl alcohol /water system is systematically investigated to identify the optimum formulation. The microstructure of intermediate phases has been characterized by optical microscope and small angle X-ray diffraction. The microstructure of formulation concentrate has been further determined by means of electrical conductivity. The droplet size of nanoemulsion has been determined by light scattering and correlated with their microstructure. The results show that d-limonene nanoemulsion with droplet size of ca. 40 nm is obtained via the addition of the optimum formulation, which is a microemulsion, directly into water. This process involves composition change from a bicontinuous structure.
水纳米乳液中的D-柠檬烯是在室温下通过低能工艺由最佳配方制备而成。系统研究了D-柠檬烯/异十三醇乙氧基化物-6/异丙醇/水体系的相行为,以确定最佳配方。通过光学显微镜和小角X射线衍射对中间相的微观结构进行了表征。配方浓缩物的微观结构通过电导率进一步确定。纳米乳液的液滴尺寸通过光散射测定,并与它们的微观结构相关联。结果表明,通过将作为微乳液的最佳配方直接加入水中,可获得液滴尺寸约为40 nm的D-柠檬烯纳米乳液。该过程涉及从双连续结构的组成变化。