1) microemulsion phase
微乳相
1.
An overview on microemulsion phase extraction technology;
微乳相萃取技术的研究进展
2.
In view of the waste water in many kinds of metallic ion s separation and the recycling question,and the predecessors studies which have done , this article use three-phasee xtracting method to deal with the ions-Ni,Co,Cu,Fe and the high concentration ammonia nitrogen wastewater , applicating microemulsion phase todeal with the waste water.
针对废水中多种金属离子的分离和回收问题,本论文在前人工作基础上,应用交叉学科出现的新理论、新技术,提出利用三相萃取法处理含镍、钴、铜、铁以及高氨氮废水的实验方法,将微乳相萃取技术应用于含镍酸性废水的治理过程中。
2) furtue
微乳中相
3) reversed microemulsion
反相微乳
1.
The mass transfer characterizations in partially saponified Di-(2-ethylhexyl)-phosphoric acid ester/heptane/ NaOH/H2O reversed microemulsion extractions of L-tryptophane were presented.
考察部分皂化的二-(2-乙基己基)磷酸酯(HDEHP)/C7H6/NaOH/H2O反相微乳液(简称HDEHP微乳液)萃取色氨酸的行为。
4) microemulsion phase diagrams
微乳相图
1.
The effects of three kinds of surfactants(dodecyl sodium sulfate, Xinjiang petroleum sulfonate, Shengli petroleum sulfonate) and oil property on the microemulsion phase diagrams have been studied by emulsibility, i.
研究了十二烷基硫酸钠、新疆石油磺酸盐、胜利石油磺酸盐 3种表面活性剂 ,以及油相性质对微乳相图的影响。
5) 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
6) reverse microemulsion
反相微乳法
1.
Controlled synthesis of Ce_(0.8)Y_(0.2)O_(1.9) nanoparticles by reverse microemulsion;
纳米级固溶体Ce_(0.8)Y_(0.2)O_(1.9)的反相微乳法控制合成
2.
Among the four samples, the one prepared by reverse microemulsion method showed a perfect cubic phase and the most reducible property.
其中,反相微乳法制得的铈锆固溶体能够形成完整的立方相结构,在H2-TPR还原过程中耗氢量最大,表明其具有优良的可还原性及储放氧能力,适合作为TWC,POX等催化剂载体。
补充资料:下相微乳液
分子式:
CAS号:
性质:在低盐度时,O/W型微乳液与剩余油共存并处于平衡状态时,称为下相微乳液,因O/W型微乳液密度较油大,在试管中位于油的下面,故名下相微乳液。它所用的表面活性剂为亲水性,HLB(亲水亲油平衡值)为9~20,例如用α-烯烃磺酸盐、燃料油、氯化钠水溶液、戊醇配成的微乳液为下相微乳液。
CAS号:
性质:在低盐度时,O/W型微乳液与剩余油共存并处于平衡状态时,称为下相微乳液,因O/W型微乳液密度较油大,在试管中位于油的下面,故名下相微乳液。它所用的表面活性剂为亲水性,HLB(亲水亲油平衡值)为9~20,例如用α-烯烃磺酸盐、燃料油、氯化钠水溶液、戊醇配成的微乳液为下相微乳液。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条