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1)  interface-adsorption-coordination-reaction
界面吸附配位反应
2)  surface adsorption
界面吸附
1.
The effects of some factors, such as surface adsorption, solution pH and the molecule structure of organic additives on the photocatalytic reduction of Cr(Ⅵ)were explored.
以甲醇、正丙醇、丙三醇和苯酚作为俘获剂,研究稀水溶液中Cr(VI)的光催化还原过程,考察Cr(VI)在催化剂表面上的界面吸附行为及溶液pH值、俘获剂类型等对其光催化还原过程的影响。
3)  interfacial adsorption
界面吸附
1.
The adsorption test of modified ore is carried out for phenol-containing industrial wastewater and its interfacial adsorption ability is determined.
以广西大新锰矿出产的天然锰矿粉为原料,采取水合肼法进行改性,对工业废水中最常见的苯酚进行吸附实验,并检测其界面吸附能力。
2.
The interfacial adsorption of 1 butanol、2 butanol and 1 pentanol in the system of water and nitroethane was investigated.
:研究了正丁醇、异丁醇、正戊醇在硝基乙烷—水体系中的界面吸附 ,测定了不同实验体系中的界面吸附参数 。
3.
However, the former work mainly concerned the effect of particle wettability (often expressed by the three phase contact angle 0 of the particles) on the interfacial adsorption and Pickering emulsions, ignored the electrical properties of particles.
以往人们对颗粒界面吸附和Pickering乳状液所进行的研究,主要集中于考察颗粒润湿性(通常用三相接触角θ来表示)的影响,忽视颗粒电性质对界面吸附和乳液性质的影响。
4)  Coordination adsorption
配位吸附
1.
The coordination adsorption resins were prepared by loading different transition metal ions on macroporous sulphonic resin(D72) and acrylic acid resin(D152) respectively, and the coordination adsorption of VB 12 on the resins in various media has been investigated.
将一系列过渡金属离子载于不同的树脂上 ,制备成基体和负载离子不同的一系列配位吸附树脂 ,并考查各种树脂在不同介质中对维生素 B12 的配位吸附性能 ,从中筛选出吸附和洗脱性能较好的树脂——磺酸Zn2 + 型树脂。
2.
Purpose: Adsorbed by the coordination adsorption in the none-aqueous system,.
目的:采用配位吸附树脂对沙棘中黄酮类成分进行纯化,经一次吸附分离得到高纯度的沙棘黄酮提取物。
5)  adsorption reaction
吸附反应
1.
A copper catalyst was prepared by impregnation method and used in PH3 adsorption reaction.
采用浸渍法制备了Cu催化剂,用于PH3吸附反应。
6)  reactive adsorption
反应吸附
1.
Deep desulfurization of FCC gasoline by reactive adsorption over Nickel-based adsorbent
Ni基吸附剂上催化裂化汽油反应吸附深度脱硫性能研究
补充资料:表面活性剂界面吸附
分子式:
CAS号:

性质:又称表面活性剂界面现象。表面活性剂在液气、液液、液固的界面是以定向正吸附存在,随着表面活性剂在溶液中浓度的增大,表面活性剂在界面的定向吸附从疏散状态逐渐转变为饱和紧密状态,形成界面(表面)之间最低界面(表面)张力,导致各种界面现象,如润湿、乳化、分散、悬浮、发泡、界面电荷等。吉布斯(Gibbs)公式是计算液气、液液的表面或界面吸附定量公式。

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