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1)  milk system
乳体系
1.
This study mainly investigated on influence of emulsifier on the stability of milk system and discussed its mechanism.
研究了乳化剂对中性乳体系稳定性的影响,并对其作用机理进行了探讨。
2)  microemulsion system
微乳体系
1.
Studies on the phase of microemulsion system and preparation of platinum nonometer particles;
乳体系相行为研究及铂纳米微粒的制备
2.
The rodlike ultrafine polyoxometalate crystallite, Sr3P2Mo18O62·nH2O, was synthesized via a facile hydrothermal process at a temperature of 80~130 ℃ for 8~12 h in a PEG-600/H2O microemulsion system, using (NH4)6P2Mo18O62·nH2O and SrCl2·6H2O as the raw materials.
以SrCl2·6H2O、(NH4)6P2Mo18O62·nH2O为原料,在PEG-600/H2O微乳体系中于80 ̄130℃温度下水热反应8 ̄12h,从而制得一种多金属氧酸盐棒状超细晶体,组成是Sr3P2Mo18O62·nH2O。
3.
Hydration of sulfonate in water/AOT/n-heptane (AOT = sodium bis (2-ethylhexyl) sulfosuccinate) microemulsion system has been investigated by means of FT-IR.
运用傅立叶变换红外光谱(FT-IR)对水/琥珀酸(乙基已基)磺酸钠(AOT)/正庚烷微乳体系中磺酸根的水化作用进行了研究。
3)  emulsion system
乳液体系
1.
A new sort of water evaporation retardants of W/O emulsion system was prepared by blend of long chain fatty alcohol and short chain alcohol.
采用长链脂肪醇和短链醇复配,制成W/O乳液体系,制备了一种新型水分蒸发抑制剂。
2.
Dodecyl mercaptan(DDM) as chain transfer agent was introduced into self-crosslinkable acrylate emulsion system.
在自交联的丙烯酸酯类乳液体系中,引入链转移剂十二硫醇(DDM)。
4)  Lactic-propionic acid
乳丙体系
5)  Emulsion [英][ɪ'mʌlʃn]  [美][ɪ'mʌlʃən]
乳化体系
1.
Study on relationship between oil granule size distribution and stability of emulsion in rice milk;
大米饮料乳化体系中油脂粒径分布与乳化液稳定性关系的研究
2.
In order to compare the effectiveness of tea polyphenols (TP)and lipid - soluble tea polyphenols (LTP) in different food - related lipid systems, we systematically studied the effects of emulsifier on antioxidant activity in linoleic acid and linoleic acid - in - water emulsion at 401.
本文研究了茶多酚和脂溶性茶多酚对亚油酸及其乳化体系抗氧化作用的影响,结果发现茶多酚和脂溶性茶多酚联合处理组在亚油酸及其乳化体系中的抗氧化作用都显著优于茶多酚和脂溶性茶多酚单独处理组。
6)  microemulsion
微乳体系
1.
Biodehydrogenation of 11β-hydroxyl medroxyprogesterone by Arthrobacter simplex UR016 in microemulsion system
乳体系中11β-羟基甲羟孕酮的C_(1,2)生物脱氢
2.
The microemulsion system of oleic acid/butanol/sodium carbonate solution was employed to extract Cu2+ in aqueous phase.
采用油酸/正丁醇/碳酸钠水溶液组成的微乳体系对水相中Cu2+进行了萃取研究,考察了微乳体系组成、水相的pH、膜水比、搅拌时间以及水相中NaCl盐度等实验参数对萃取率和微乳体系乳化的影响。
3.
Calcium phosphate nanowires could be obtained in the reverse microemulsions of nonionic surfactant and ionic surfactant.
分别以非离子表面活性剂(C12E8) 和阳离子表面活性剂(CTAB) 为模板剂, 在反微乳体系中制备了磷酸钙纳米纤维。
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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