1) superfine palladium powder
超细钯粉
2) ultrafine palladium powder
超细钯粉
1.
The influence of different reducing and dispersing agents and concentration of Palladic solution on the properties of ultrafine palladium powder products has been studied.
通过试验,研究了不同的还原剂、分散剂和钯盐溶液浓度对成品超细钯粉性能的影响,并确定了生产工艺。
3) ultra-fine
超细
1.
Preparation and application of ultra-fine synergistic flame-retardant;
超细协同阻燃剂的制备及应用
2.
Study on synthesis of ultra-fine ZnO By direct precipitation method;
直接沉淀法合成超细氧化锌的研究
3.
The initial powder particle sizes of the main hard phase components [Ti(C, N), TiC and TiN] were nano/submicron-sized, in order to achieve an ultra-fine grain sizes microstructure.
为了得到超细晶粒的显微结构,主要硬质相[Ti(C,N),TiC和TiN]的初始粉末粒度为纳米、亚微米级。
4) ultra fine
超细
1.
Study of ultra fine grinding for fly ash and its properties;
粉煤灰的超细粉磨及其性能的研究
2.
The paper has summarized structure and performance features of ultra fine-cemented carbides WC-Co.
综述了超细WC-Co硬质合金的组织与性能特征。
3.
The fabrication of ultra fine layered materials and the intercalation of nanocomposites are emphasized.
着重强调了超细层状材料的制备方法,层状材料的改性思路及最新研究热点,并对该类新型材料在光催化领域的研究和应用提出了一些展望。
5) superfine
超细
1.
Preparation and modification of highly dispersed superfine silica;
超细二氧化硅的制备与改性
2.
Applied Study on the Surface Modification of the Superfine AlOOH in Poly (vinyl chloride ) Plastics;
超细改性AlOOH在PVC塑料中的应用研究
3.
Study on the chip and high-speed spinningfor superfine polypropylene fibers;
超细丙纶专用切片和高速纺丝工艺研究
6) ultrafine
超细
1.
Preparation of ultrafine CeO_2 powder and its particle size control;
超细氧化铈粉体的合成及粒度控制
2.
The Key Technologies of Ultrafine Cement Mill Development;
超细水泥磨机开发关键技术探析
3.
Preparation of"ultrafine"white carbon black by impinging stream reaction-precipitation;
撞击流反应-沉淀法制备超细白炭黑
参考词条
补充资料:超细钯粉
分子式:
CAS号:
性质:微米级粒度的钯粉,有鳞片状、无定形和球状。一种鳞片状钯粉的松装密度0.67~0.95g/cm3。摇实密度1.6~2.00g/cm3。平均粒度0.35~0.48μm,比表面积3.3~5.2m2/g。先将纯钯转换成氯钯酸溶液,加氨水络成、加分散剂、加热搅拌、加还原剂、洗涤、烘干即得平均粒度<0.5μm的超细钯粉。作厚膜浆料的导电相、粉末冶金原料、催化剂、汽车尾气净化等。
CAS号:
性质:微米级粒度的钯粉,有鳞片状、无定形和球状。一种鳞片状钯粉的松装密度0.67~0.95g/cm3。摇实密度1.6~2.00g/cm3。平均粒度0.35~0.48μm,比表面积3.3~5.2m2/g。先将纯钯转换成氯钯酸溶液,加氨水络成、加分散剂、加热搅拌、加还原剂、洗涤、烘干即得平均粒度<0.5μm的超细钯粉。作厚膜浆料的导电相、粉末冶金原料、催化剂、汽车尾气净化等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。