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1)  highly dispersed nano-catalyst
高分散纳米催化剂
1.
The principle and process of the organic colloid method were introduced and progress of its application in preparing highly dispersed nano-catalyst was reviewed.
介绍了有机溶胶法制备纳米催化剂的原理、工艺过程和分类,综述了有机溶胶法在制备高分散纳米催化剂应用中的最新研究进展,分析了制备过程中影响催化剂粒径大小及分布的因素(溶剂、还原剂、pH、外部环境等),指出了目前有机溶胶法在制备纳米催化剂应用中存在的问题,评述了有机溶胶法制备纳米催化剂的特点及发展方向。
2)  high-dispersion catalysts
高分散度催化剂
1.
This paper has reviewed the current methods and their characteristics for synthesizing the high--dispersion catalysts used in direct coal liquefaction, putting emphasis oncatalytic mechanism of Fe--base catalysts investigated overseas.
综述了煤炭直接液化高分散度催化剂的主要研制方法及其特点,重点介绍了国外对于Fe系催化剂催化机理的研究。
3)  highly dispersed catalyst
高分散催化剂
4)  nano-catalyst
纳米催化剂
1.
Application of supercritical fluids in synthesizing nano-catalysts;
超临界流体技术在纳米催化剂制备中的应用
2.
Optimization of preparation conditions of nano-catalyst KF/Al_2O_3;
纳米催化剂KF/Al_2O_3制备条件的正交设计与优化
3.
The NO-SCR activity of Pt-γ-Al 2O 3-CeO 2 nano-catalysts synthesized respectively by impregnation and coprecipitation methods is compared over the simulative lean burn diesel exhaust.
模拟贫燃机车尾气条件下 ,比较浸渍法和共沉淀法制备的 Pt-γ- Al2 O3- Ce O2 纳米催化剂对 NO的催化还原活性 。
5)  nanocatalyst
纳米催化剂
1.
Preparation of KF/γ-Al_2O_3 nanocatalyst and its catalysis in the preparation of biodiesel from stillingia oil;
纳米催化剂KF/γ-Al_2O_3的制备及催化乌桕籽油制备生物柴油
2.
Preparation and catalytic activity of the molybdovanadophosphate nanocatalyst with Keggin structure;
Keggin结构磷钼钒酸盐纳米催化剂的合成及其催化性能
3.
Reverse Microemulsion Synthesis and Characterization of the Nanocatalysts;
纳米催化剂的微乳法制备及其表征
6)  nanometer catalyst
纳米催化剂
1.
Preparation of copper(Ⅱ) resorcylic nanometer catalyst;
二羟基苯甲酸铜纳米催化剂的制备
2.
The basic theories,main preparation methods and applications of microemulsion reaction on preparing nanometer catalyst in resent years were reviewed.
综述了微乳液法制备纳米催化剂的基本原理和主要方法以及近年来在催化剂制备中的一些应用。
3.
The nanometer catalyst had some remarkable characters so that its preparation tech- nology has been a rising area in the research of chemi- cal engineering.
纳米催化剂相对常规尺寸的催化剂具有更高的表面原子比,更大的比表面积,表面能等优点,故其制备技术已成为化学工程研究的一个新兴领域。
补充资料:催化剂孔隙度(degree of catalyst pole)
分子式:
CAS号:

性质:又称催化剂孔隙度(degree of catalyst pole)。多孔性催化剂颗粒内微孔的总体积,单位是ml/g。其大小由催化剂制备条件决定。

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