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1)  concentration of solid panical
固体微粒浓度
2)  particle consistency
微粒浓度
1.
So many students are puzzled with the correct comparison between the relations of the particle consistency in electrolytic solution that correctly grasping it can help understand the knowledge of hydrolysis and electrolysis in order to improve students’ comprehensive analytic capability.
电解质溶液是中学化学的一个重要组成部分,是高考的热点,电解质溶液中微粒浓度关系的正确比较与判断,常常是很多学生学习的难点和盲点。
3)  axial concentration distribution of solid particles
固体颗粒轴向浓度分布
4)  solid concentration
固体浓度
1.
The effect of solid concentration and style of sewage sludge on bioleaching of copper, lead and zinc was investigated.
研究了污泥固体浓度和污泥类型对Cu、Pb和Zn生物沥滤的影响。
2.
The solid concentration distribution in a gas-solid fluidized bed was studied by using fiber optical probes as detecting apparatus.
000mm的气固流化床冷模装置中进行,采用PC6D型光纤粉体浓度测试仪来检测固体浓度。
5)  Solid particle
固体微粒
1.
The composition of solid particle and influence on interfacial tension between organic phase and water phase were investigated at different pH by using XRD and interfacial tension instrument.
为查清紫金山铜矿溶剂萃取铜过程界面乳化的原因,采用X射线衍射和界面张力等现代分析检测手段,考察了铜溶剂萃取过程中固体微粒的组成和来源以及不同pH值条件下不同种类的固体微粒对有机相-水相间界面张力的影响。
2.
The effects of solid particles on stability of interfacial emulsion in copper solvent extraction was studied.
对铜溶剂萃取时萃原液中固体微粒稳定界面乳化液的机理进行了研究。
3.
In order to investigate the influence of the solid particle on the zincous electrlbath's voltage and the quality and output of depositing zinc in zinc electrowinning,two different type of filters are introduced to carry out the filtration experiment of electrolysis mixture liquid.
指出悬浮在电解混合液中的固体微粒主要是钙和锶的不溶物、SiO2 及少量MnO2 。
6)  solid particles
固体微粒
1.
For solid particles being the most deleterious matter in lubricating oils,the dielectrophoresis separation process system for removing the solid particles was established.
针对润滑油中危害最大物质之一的固体微粒,建立了润滑油介电动力学分离流态实验装置系统,研究了该方法主要工艺技术参数:电场强度和流速等。
2.
In order to avoid the formation of the third phase during the process of solvent extraction of copper,the composition of the solid particles in the third phase was examined by XRD as well as adsorption and degradation of the extractant caused by the solid particles were investigated by IR and GC-MS methods.
采用X射线衍射、傅立叶变换红外光谱、气-质联用色谱等分析检测手段研究了铜萃取过程中第三相固体微粒的组成、固体微粒对萃取剂的吸附和降解作用,寻求抑制铜萃取过程中第三相形成的方法。
补充资料:MH微粒硬质造牙材料
分子式:
CAS号:

性质:以甲基丙烯酸甲酯-苯乙烯共聚物为基质,以微粒二氧化硅(1000目以上)作填料,用有机硅烷处理后配制而成。它既能保持陶瓷牙的优点,又兼有塑料牙的长处,其力学性能又接近天然牙,是硬质复合的新型造牙材料。

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