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1)  two-step coprecipitation
二步共沉淀法
2)  coprecipitation ['kəupri,sipi'teiʃən]
共沉淀法
1.
Study on the preparation of ceramic powders of ternary pyrochlor containing bismuth by coprecipitation;
共沉淀法制备三元系铋基焦绿石型陶瓷粉体
2.
Study on coprecipitation synthesis and photocatalytic activity of SrFeO_(3-x);
共沉淀法合成铁酸锶及其光催化活性研究
3.
Kinetics of Synthetic of Cl-Type Hydrotalcitelike with Coprecipitation Reaction;
氯离子柱撑水滑石共沉淀法合成反应动力学
3)  coprecipitation method
共沉淀法
1.
Preparation of Cu~Ⅰ-containing absorbents by coprecipitation method and their sweetening effect in kerosene;
共沉淀法负载亚铜吸附剂的制备及其脱除煤油中硫醇的研究
2.
Synthesis of nano-sized chrome-magnesium spinel powders by coprecipitation method;
共沉淀法制备纳米镁铬尖晶石粉体
3.
Preparation of nanometer-sized antimony-doped SnO_2 powder in coprecipitation method;
共沉淀法制备掺锑SnO_2纳米级粉体
4)  co-precipitation
共沉淀法
1.
Influences of precipitation temperature on LaMnAl_(11)O_(19) catalysts prepared by co-precipitation;
温度对共沉淀法制备LaMnAl_(11)O_(19)催化剂的影响
2.
Studies on the preparation,structure and spectral character of YAG,Nd∶YAG nano-powder by co-precipitation method;
共沉淀法YAG、Nd∶YAG纳米粉体的制备、结构与光谱性能研究
3.
Preparation of ultra-fine indium tin oxide powders with high specific surface areas by co-precipitation method;
共沉淀法制备高比表面积的铟锡氧化物超细粉末
5)  co-precipitation method
共沉淀法
1.
Fabrication of YAG ultrafine powder and translucent ceramics by co-precipitation method;
共沉淀法制备YAG超细粉及透明陶瓷
2.
Synthesis of cathode material-LiFePO_4 by co-precipitation method and performances study;
共沉淀法合成磷酸亚铁锂正极材料及性能研究
3.
Study on luminescent properties of red phosphor CaO:Eu~(3+) prepared by co-precipitation method
共沉淀法合成CaO:Eu~(3+)红色荧光粉的研究
6)  co precipitation
共沉淀法
1.
A series of 1% Pd/Al_2O_3 TiO_2 catalysts were prepared by co precipitation method.
文中采用共沉淀法制备了混合载体质量分数为 1%的Pd/Al2 O3 TiO2 催化剂 ,借助XRD和XPS对样品进行了表征 ,结果表明 :混合载体Al2 O3 TiO2 为无定形结构 ;TiO2 降低了Pd和Al2 O3的相互作用能力。
2.
The compound metal oxides La x Mn y Pb z O used as Pd catalyst supports for direct synthesis of diphenyl carbonate (DPC) through heterogeneous catalytic reaction were prepared by sol gel, co precipitation and freeze drying methods and calcined at 700~800 ℃.
采用溶胶 凝胶法、共沉淀法和冷冻干燥法 ,制备了LaxMnyPbzO复合型金属氧化物载体 ,并以PdCl2 或Na2 PdCl4的水溶液为浸渍液 ,通过浸渍方法制得固相催化剂 ,用于一步合成碳酸二苯酯 。
3.
SiC/(Al 2O 3+Y 2O 3) powder mixtures were prepared by a co precipitation method and the conventional mechanical mixing method, respectively.
研究了分别利用共沉淀法和机械混合法制备的两种SiC/ (Al2 O3 +Y2 O3 )复合粉体的烧结行为、力学性能、YAG分布及相组成·结果表明 ,共沉淀法制备的复合材料YAG相分散均匀、反应完全、烧结致密化温度比机械混合方法低约 10 0℃ ,并具有较高的强度和相对体积质量·在175 0℃烧结 30min ,共沉淀法得到的SiC/YAG陶瓷相对体积质量为 98 8% ,抗弯强度为 5 5 3MPa ,硬度为 2 3 9GPa
补充资料:共晶共沉淀
分子式:
CAS号:

性质:共沉淀法之一,指无法结晶的微量物质与常量物质产生共结晶沉淀而被载带出来。

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