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- Keywords polypropylene;CaCO3 nanoparticle;distribution;crystallite; 聚丙烯;纳米碳酸钙;分散;结晶;
- CaCO3 nanoparticle 纳米碳酸钙
- Preparation of silicon oxide nanoparticle. 纳米二氧化硅粉体的制备。
- AUC of nanoparticle was 25.8 times of injection. AUC是注射剂的25 .;8倍。 而PEG化壳聚糖修饰的
- TiO2, CaCO3, Paints, Printing ink, Pigments, Dyes, etc. 钛白粉,碳酸钙,油漆,油墨,颜料,染料等。
- CaCO3 nanoparticles 碳酸钙
- The entrapping of ADM in ADM-loaded nanoparticle(ADMNP)is 0.78mg/ml. 纳米粒阿霉素的载药量为0.;78mg/ml;
- Gold nanoparticle(GNP) probes have aroused more and more interest recently. 金纳米颗粒(GNP)探针正引起科学家们越来越多的兴趣。
- Solid lipid nanoparticle is a new drug delivery system of nano-range. 固体脂质纳米粒是一种新型的纳米给药系统。
- Objective To investigate the toxicology and biodynamics of silica nanoparticle. 目的:研究硅颗粒制成纳米颗粒后的长期毒性及生殖毒性。
- Nanoparticle technology is widely used in the production of cosmetics industry. 纳米粒子技术被广泛应用于化妆品生产业。
- The experimental results testify that the main cement of loess aggregates is CaCO3. 实验结果证明了黄土团粒的主要胶结物是碳酸钙这一理论。
- By static anti-scaling method, through scale inhibition capacity test of CaCO3, the result show that PAA has good inhibitive effect on CaCO3. 通过聚丙烯酸(PAA)对碳酸钙垢的静态阻垢法阻垢实验,结果表明:聚丙烯酸有良好的阻碳酸钙垢效果。
- At last,the causes of abnormal infrared absorption from nano CaCO3 are discussed. 同时对纳米CaCO3粉末的红外光谱出现反常红外吸收现象的原因进行了分析讨论。
- The cyclic reaction characters of CaCO3 and three dolomites with CO2 was experimentally investigated. 对分析纯碳酸钙和三种白云石与CO2的循环反应特性进行实验研究。
- The conductivites of a super-saturated CaCo3 solution with and without the addition of a scale inhibitor were measured. 这种方法基于溶液电导率测定原理,是通过在加入阻垢剂和不加阻垢剂的特定水环境下测定各种成垢化合物的过饱和度来实现。
- Morphology and crystal structure of dry spherical CaCO3 can’t be changed with time. 已烘干的球形样品不会随着放置时间的增加而改变其形貌和晶型。
- Laser confocus scanning microscope was employed to observe structures of CaCO3 filled polyurethane foam. 用激光共聚焦扫描显微镜对其结构进行了研究。
- Application and prospect of nano-scale CaCO3 in rubber, plastic production, paint, ink and etc. are described. 阐述了纳米级碳酸钙在橡胶、塑料制品、造纸、涂料、油墨等方面的应用情况及其开发前景。
- The CdS nanoparticle obtained is cubic crystal structure with average size of 15~25 nm. 结果表明,低温固相法得到的纳米硫化镉为立方晶系结构,微粒平均粒径为15~25 nm。