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1)  Microemulsion Sampling
微乳液进样
1.
Simultaneous Determination of Lead and Zinc in Natural Water by Flame Atomic Absorption Spectrometry with Microemulsion Sampling and Diphenylthiocarbazone Liquid-Liquid Extraction;
双硫腙四氯化碳萃取微乳液进样火焰原子吸收光谱法同时测定天然水中的铅和锌
2)  emulsion sampling
乳浊液进样
1.
FAAS determination of zinc and lead in lubricating grease with emulsion sampling;
乳浊液进样-火焰原子吸收光谱法测定润滑脂中锌和铅
2.
Determination of trace elements in spirulina by emulsion sampling flame atomic spectrometry;
乳浊液进样火焰原子光谱法测定螺旋藻中的微量元素
3.
The emulsion sampling-flame atomic absorption spectrometry is discussed to determine the cadmium, lead, chromium content of lacquer.
探讨了乳浊液进样FAAS(火焰原子吸收光谱)法测定面漆中镉、铅、总铬含量的分析方法。
3)  modified microemulsion polymerization
改进的微乳液聚合
4)  microemulsion
微乳液
1.
Application of W/O Microemulsion in Preparation of Ultra-fine Alumina from Coal Gangues;
W/O型微乳液在煤矸石制取超细氧化铝中的应用
2.
Application of the phase inversion of microemulsions in the organic contaminant separation;
微乳液相转变在分离有机污染物方面的应用
3.
Properties of sodium dodecyl sulfate/ n-butanol/ n-heptane/water microemulsion system;
十二烷基硫酸钠/正丁醇/正庚烷/水微乳液性质研究
5)  microemulsion
微乳状液
1.
Investigation of Extraction Process by Titration Calorimetry(Ⅳ)——Formation of Reversed Micelle and Microemulsion in Extraction Organic Phase or Saponated P507;
萃取过程的量热研究(Ⅳ)——皂化P507萃取有机相中反向胶束和微乳状液的形成
2.
Results show that the maximum area of microemulsion region is achieved using tween-60 as surfactant with the km value being of 0.
结果表明,所研究的各体系中,以吐温-60所形成的微乳状液区最大。
3.
The paper simply introduced the classification and property of microemulsion(ME).
介绍了微乳状液的体系类型及性质,阐述了其作为研究热点的应用现状,并预测了微乳状液的前景。
6)  microemulsion
微乳液法
1.
The preparation of nano Fe_2O_3 powder via W/O microemulsion method and its gas sensitivity;
Fe_2O_3基纳米粉体的微乳液法制备及其气敏性
2.
Synthesis of Calcium Fluoride Nanoparticles from Microemulsion;
微乳液法制备CaF_2纳米颗粒
3.
Preparation of Pt/C electrocatalyst used in PEMFC by microemulsion method;
微乳液法制备PEMFC用Pt/C电催化剂
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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