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1)  interfacial microemulsions
相间微乳液
2)  inverse microemulsion
反相微乳液
1.
Research progress of inverse microemulsion technology for preparing nanoparticles;
反相微乳液法制备纳米颗粒研究进展
2.
Recent development on kinetics of inverse microemulsion polymerization;
反相微乳液聚合动力学研究进展
3.
Conductive behavior of the inverse microemulsions containing acrylamide and/or acrylic acid;
丙烯酰胺及丙烯酸反相微乳液聚合体系电导行为
3)  middle-phase microemulsion
中相微乳液
1.
The phase behavior of the middle-phase microemulsion for the quaternary system of sucrose ester/alcohol/soya-hean oil/water was studied with modified ε-β fishlike phase diagrams.
研究体系随醇浓度的增加,微乳液类型发生WinsorⅠ→Ⅲ→Ⅱ的转变,由各相体积以及中相微乳液形成和消失时醇的浓度,可绘制ε-β“鱼状”相图,并计算各种参数;比较了不同醇类、不同电解质对体系微乳效率,界面膜组成的影响规律。
2.
The phase behavior of the middle-phase microemulsion for the quaternary system of the mixed-chain alkyl polyglucoside (C 8/10APG or C 12/14APG)/1-butanol/n-octane/water has been studied with Winsor phase diagram, δ-γ fishlike and modified ε-β fishlike phase diagrams.
43 )中相微乳液的相行为 。
3.
The synthesis, analysis, properties of surficial chemistry and the middle-phase microemulsion of sucrose fatty acid esters (SE) have been studied in this dissertation.
分别从SE的合成、分析表征、表面化学性能及中相微乳液等方面对其展开了较为系统的研究。
4)  reverse microemulsion
反相微乳液
1.
Preparation of Ce and Mn substituted hexaaluminate catalysts for natural gas combustion by reverse microemulsion;
反相微乳液法制备铈锰取代六铝酸盐甲烷燃烧催化剂
2.
Preparation of nano-sized bismuth oxide nitrate hydroxide hydrate particles by a reverse microemulsion method;
反相微乳液法制备纳米四水羟基硝酸氧铋
3.
Preparation of ultrafine silica with different morphologies using reverse microemulsions;
反相微乳液法制备不同形貌超细二氧化硅
5)  inverse microemulsions
反相微乳液
1.
Preparation of nanometer silver powder in inverse microemulsions;
反相微乳液法制备纳米金属银粉
2.
Nanostructured copper was synthesized in inverse microemulsions.
通过反相微乳液法制备了纳米铜粒子,并用透射电子显微镜(TEM)、电子衍射(SAED)和能谱对铜纳米粒子的形貌和物相进行了表征。
6)  middle phase microemulsion
中相微乳液
1.
Sodium perfluorooctanoate / cetyltrimethylammonium bromide, n - propyl alcohol/ butyl alcohol, octane and brine can form middle phase microemulsion.
全氟辛酸钠(OBS)/十六烷基三甲基溴化铵(CTAB)-正丁醇/正丙醇-油-盐水体系能形成多相微乳液,本文应用正交试验设计寻找了最佳中相微乳液体系组成,然后系统地研究了含盐量、表面活性剂总浓度,醇总浓度,油的种类对该体系中相微乳液的形成,相态和其特性参数的影响。
2.
The experiments show that the system of n butanol,octane,brine and amphoteric surfactant (dodecyl betain)can form middle phase microemulsion.
本文系统地研究了表面活性剂,正丁醇和氯化钠的浓度对该体系的中相微乳液的形成及特性的影响,得到了中相微乳液的特性参数(最佳含盐量S*,界面张力rE和盐宽△S等)。
3.
The effects of partially hydrolyzed polyacrylamide(HPAM), xanthan gum(XC) and lignosulfonate(LS) on the middle phase microemulsion containing petroleum sulfonate, mixed n butyl and i propyl alcohols and mineralized water have been studied by phase volume, interfacial tension( IFT ), viscosity and solubilizing parameter measurements.
研究了水解聚丙烯酰胺、黄原胶和木质素磺酸盐对中相微乳液相体积、粘度和界面张力的影响。
补充资料:上相微乳液
分子式:
CAS号:

性质:在高盐度时,W/O微乳液与剩余盐水共存并处于平衡状态时,称为上相微乳液。因W/O型微乳液密度较盐水小,在试管中拉于盐水的上面,故名上相微乳液。它所用的表面活性剂常为亲油性,HLB(亲水亲油平衡值)为4~7,例如用甘油单月桂酸酯硫酸钠、油(如正癸烷)、盐水、醇配制成的微乳液即为上相微乳液。

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