1) interfacial activity
油水界面活性
1.
The product has a high recovery,a stable property,a high resistance to alkyline,a good interfacial activity between oil and water.
本方法不用乙醇萃取等后处理工艺 ,合成条件易控制 ,产品性能稳定 ,油水界面活性好 ,抗碱能力强 ,适用范围广 ,成本低。
2) Youshui(油水)
油水
3) oil-water
油-水
4) oil/water separation
油水分离
1.
The 3D numerical simulation of oil/water separation flow field in a gravitational separator is carried out by using the standard κ-ε model and multiphase mixture model of Fluent software.
应用Fluent软件的标准κ-ε模型和多相混合模型,对重力式分离器的油水分离内流场进行了三维数值模拟,得到含有2种不同入口构件、4种不同整流构件和6种不同聚结构件的分离器内部速度矢量和流场,分析并比较了不同构件的分离特性。
2.
The principal structure and the operating principle were presented for oil/water separation of dynamic hydrocyclones, whose designing methods of structural performance and manufacturing engineering were described, which were made through a indoor test and a field trial.
介绍了用于油水分离的动态水力旋流器的主要结构及其工作原理 ,论述了其结构性能设计及制造工艺方法 。
3.
In this paper,we discuss the development of gravity oil/water separation techniques systematically,include the reviewed situation of engineering application and the development.
结合作者工作实践 ,从油水分离技术工业设备应用的现状和重力分离设备的发展概况等方面 ,介绍了油水重力分离设备的发展过程。
5) oil/water interface
油水界面
1.
Molecular dynamics simulations on the aggregation of AOT at oil/water interface;
油水界面上AOT聚集行为的分子动力学模拟
2.
In this paper research on the oil/water interfacial shear viscosity is reviewed and prospects for the study of oil/water interfaces are also put forward.
界面剪切黏度是表征乳液油水界面膜性质的重要参数之一,界面剪切黏度反映了油/水界面膜的强度。
6) oil and water separation
油水分离
1.
Several methods of oil and water separation have been compared, the principle and scope of application of each method for oil and water separation being narrated respectively.
比较了几种油水分离方法,并分别叙述各油水分离方法的原理及适用范围。
参考词条
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。
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。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。