1)  carrier metal
载体金属
2)  metal
载体金属
3)  Support metal strong interaction
载体金属强相互作用
4)  carriers
载体
1.
Application of natural polysaccharide on materials used as enzyme immobilization carriers;
天然多糖在酶固定化载体材料中的应用
2.
Effect of carriers on anaerobic digestion of cow manure and microbes adhered to them;
载体对牛粪厌氧消化性能及微生物附着的影响
3.
Synthesis of Lipophilic Metal Phthalocyanines and Application for Carriers of PVC Membrane Electrode;
脂溶性金属酞菁的合成及其作为PVC膜电极载体的研究
5)  support
载体
1.
Effect of support on performance of Ni based catalysts for CH_4/CO_2 reforming to syngas;
载体对镍基催化剂CH_4/CO_2重整反应性能的影响
2.
Preparation of nanoparticle MgO support for CO_2-CH_4 reforming;
CH_4-CO_2重整催化剂用纳米MgO载体的制备
3.
Hydrodesulfurization and reducing-olefin of tungsten phosphide catalysts over different supports;
不同载体负载的磷化钨催化剂加氢脱硫和降烯烃性能研究
6)  supporter
载体
1.
Experimental study on wastewater of egg powder treatment using immobilized activated sludge with chitin supporter;
甲壳素为载体固定化活性污泥处理蛋粉废水的研究
2.
Effect of supporter on catalytic performance of fluid catalytic cracking catalyst;
载体特性对催化裂化催化剂性能的影响
3.
Experiment of de-ethanol with CS-2 type catalyst supporter and its influences on fine polymer powder;
CS-2型催化剂载体的脱醇试验及对聚合物细粉产生的影响
7)  Carrier
载体
1.
Application of starch based degradable carrier in simultaneous nitrification and denitrification;
淀粉基可生物降解载体在同步硝化反硝化中的应用
2.
Determination of Phosphor in Refined Tungsten Ore—Calcium Carrier Precipitation and Separation—Bismuth Phosphorus Molybdenum Blue Photometry;
钨精矿中磷的测定-钙载体沉淀分离-铋磷钼兰光度法
3.
Improving dyeability of polysulfonamide via carrier Sa;
载体Sa提高芳砜纶可染性的研究
8)  nitric oxide carrier
NO载体
9)  Vector
载体
1.
Construction of eukaryotic vector pcDNA3.1-flag-pygo2 and expression in C6 cell;
pcDNA3.1-flag-pygo2真核表达载体的构建及在C6细胞中的表达
2.
Construction and identification for the transgenic plant vector of recombinant plasmid pBI-Eg95-EgA31 of Echinococcus granulosus;
细粒棘球绦虫转基因植物载体重组pBI-Eg95-EgA31质粒构建及鉴定
3.
Construction of an expression vector for high expression of siRNA;
一种高效表达小干扰RNA载体的构建研究
10)  supporting medium
载体
补充资料:金属载体强相互作用
分子式:
CAS号:

性质:金属负载于可还原的金属氧化物载体(如TiO2,Nb2O5,V2O3)上,在高温下还原时,载体被还原(如Ti4O7),将部分电子传递给金属(如使Pt的非占有电子轨道被充满),导致降低金属(主要是Pt,Pd,Rh等贵金属)对H2的化学吸附和反应能力。由陶斯特(Tauster)于1978年发现。这种载体对金属相互作用所作的电荷修饰作用,使金属粒子在载体表面的形貌发生较大变化(如Pt成为六角形的单原子层筏结构),诱发特有的催化活性和化学吸附性能。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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