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1)  emulsion [英][ɪ'mʌlʃn]  [美][ɪ'mʌlʃən]
乳浊液
1.
Preparation of ZrO_2(Y_2O_3) spherical nanometer powders via coupling route of water-oil emulsion with homogenous precipitation;
乳浊液和均匀沉淀结合法制备球形纳米ZrO_2(Y_2O_3)粉末
2.
The Enhancement Effect of Emulsion in Flame Atomic Absorption Spectrometry;
火焰原子吸收光谱法中乳浊液的增敏效应
3.
The comparision of drug effect and irritation of miconazolen itrate emulsion and its inclusion compound;
硝酸咪康唑乳浊液和环包物的药效及刺激性比较
2)  Levitation [英][ˌlevi'teiʃən]  [美][ˌlɛvə'teʃən]
悬乳浊液
1.
Direct Determination of Lean in Meat by L'vov Platform GFAA——Application The technique of Preparation Levitation by Low Temperature and Matrix Modifier;
平台石墨炉原子吸收法直接测定肉类中铅——应用超低温制悬乳浊液与基体改进剂技术
2.
Direct Determination of Cadmium in Solid Drinks by Graphite Furnace Atomic Absorption with Levitation;
石墨炉原子吸收法悬乳浊液直接进样测定固体饮料中的镉
3)  emulsion method
乳浊液法
1.
7H_2O by the emulsion method.
FeSo_4·7H_2O为原料,用乳浊液法制备了平均粒径在12-18nm的超细球形Fe_2o)_3粉体,运用X射线衍射、电感耦合等离子体光谱、透射电镜等分析手段对粉体进行了表征。
2.
Ultrafine Y2O3 stabilized ZrO2 powder with average crystalline size of 13~14um and irregular oreven spherical secondary particle shape has been prepared by the emulsion method.
用乳浊液法制备了平均晶粒尺寸为13~14nm,二次颗粒呈多边形或球形的3mol%Y2O3-ZrO2粉体。
4)  emulsion [英][ɪ'mʌlʃn]  [美][ɪ'mʌlʃən]
乳浊液,乳剂,乳胶
5)  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。
6)  Beverage Emulsions
饮料乳浊液
1.
Beverage Emulsions and Their Opacity Test Method by Spectrophotometry;
饮料乳浊液及其浊度的分光光度法测量
补充资料:乳浊液
分子式:
CAS号:

性质:又称乳浊液,乳状液。是由两种(或两种以上)互不相溶(或不完全相溶)的液体构成的两相液态体系。其中一种液体的微细液滴(均0.1μm)均匀分散于另一种液体中,前者称为分散相,后者称为连续相。以水乳液为例,连续相就是水。习惯上将构成分散相的有机液体称作“油(O)”;谓之水包油乳液(O/W);反之,如连续相为有机液体而分散相是水,则谓之为油包水乳液(W/O)。乳液较不稳定,容易发生相分离现象,必须加入乳化剂。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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