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1)  ultrafine ZrO2 particles
ZrO2超细粒子
2)  ultrafine ZrO2 powder
ZrO2超细粉
1.
The preparation methods and measures of alleviating agglomeration of ultrafine ZrO2 powder are introduced,and the suggestion adapting for industrial production is put forward.
本文介绍了ZrO2超细粉体的制备方法及减轻其团聚的措施,并提出了适合工业化生产的建议。
3)  ultrafine ZrO2
超细ZrO2
1.
Gelation process of ultrafine ZrO2slurry at room temperature was studied to probe into application of gelcasting in ultrafine powder fields.
为了探讨凝胶注模成型工艺在超细粉体领域的应用,研究了超细ZrO2粉体室温下的凝胶过程。
4)  superfine particle
超细粒子
1.
Tetraammine-cis-bis(5-nitro-2H-tetrazolato-N2) cobalt (Ⅲ) perchlorate (BNCP) superfine particles were obtained with fluid milling and cryogenic drying methods.
采用机械研磨和低温干燥的方法获得了高氯酸·[四氨·双(5-硝基四唑)]合钴(Ⅲ)(BNCP)的超细粒子。
2.
Adopting superfine particle as catalytic agent will exert special influence upon activity and selectivity of the catalytic agent.
对超细粒子催化剂的应用现状作了详尽的阐述,分析了超细粒子催化剂的制备特点,指出了其发展方向。
3.
Tetraammine-cis-bis(5-nitro-2H-tetrazolato-N2) cobalt(Ⅲ) perchlorate(BNCP) superfine particles were obtained by fluid milling and cryogenic drying methods with absolute ethanol as non-solvent.
双(5-硝基四唑)]合钴(Ⅲ)(BNCP)的超细粒子,测试了其粒度、比表面积、感度、热性能。
5)  Ultrafine particle
超细粒子
1.
Preparation and application of catalyst of high dispersing,supported,ultrafine particle;
高分散负载型超细粒子催化剂的制备及应用
2.
In this paper the properties of ultrafine particle catalysts were investigated and some of available preparation methods discussed.
介绍了超细粒子催化剂的性质及现有的一些制备方法,并对制备方法的优缺点进行了评价。
3.
Then ZrO_2 was deposited on these magnetic Fe_3O_4 cores by precipitation of ZrOCl_2·8H_2O with NaOH solution to become ultrafine particles of core she.
将磁性Fe3O4 纳米材料和SO2 -4 ZrO2 固体酸进行组装 ,制得一系列具有磁性和超细粒子结构的固体酸催化剂SO2 -4 ZrO2 /Fe3O4 。
6)  ultrafine particles
超细粒子
1.
Preparation of α-Al_2O_3 ultrafine particles by microemulsion reaction and their characterizations;
微乳法制备α-氧化铝超细粒子及结构表征
2.
Properties of TiO_2 ultrafine particles were charactered by DSC,FTIR,XRD,BET and TEM.
采用表面活性剂OP-7、正庚烷、水和异戊醇形成的微乳体系制备TiO2超细粒子,并考察水和异戊醇含量对TiO2超细粒子平均粒径的影响。
3.
The droplets were hydrolysed with vater vapor at lower temperature to synthesize TiO2 ultrafine particles of high purity andnarrow size distribution.
氧化钛超细粒子具有很高的化学活性、良好的耐侯性和耐化学腐蚀性等,可。
补充资料:染料细粉及超细粉
分子式:
CAS号:

性质:非水溶性染料或不易溶染料常采用的剂型。如分散染料、还原染料等对粒度及粒度分布均有一定要求,要求相对集中,过细、过粗,均对使用有不良影响。染料生产企业对本企业的产品均作了规定。这些染料产品一般多在2μm到上到4μm范围内,如对某些分散染料要求控制在1μm左右,分散性能4~5级,还原染料也与分散染料近似,故有超细粉之称。为使染料产品达到上述细度,常采用万能粉碎机或砂磨、球磨等进行粉碎。

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