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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Key process parameters to modify the porosity of cerium dioxide microspheres formed in the internal gelation process
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Key process parameters to modify the porosity of cerium dioxide microspheres formed in the internal gelation process

机译:改变内部凝胶过程中形成的二氧化铈微球的孔隙率的关键工艺参数

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Recently, an internal gelation study demonstrated that the use of heated urea and hexamethylenetetramine can have a pronounced impact on the porosity and sintering characteristics of cerium dioxide (CeO2) microspheres. This effort has identified process variables that can significantly change the initial porosity of the CeO2 microspheres with slight modifications. A relatively small difference in the sample preparation of cerium ammonium nitrate and ammonium hydroxide solution had a large reproducible impact on the porosity and slow pour density of the produced microspheres. Increases in the gelation temperature as small as 0.5 K also produced a noticeable increase in the slow pour density. If the gelation temperature was increased too high, the use of the heated hexamethylenetetramine and urea was no longer observed to be effective in increasing the porosity of the CeO2 microspheres. The final process variable was the amount of dispersing agent, Span T 80, which can increase the slow pour density and produce significantly smaller microspheres. (C) 2017 Elsevier B.V. All rights reserved.
机译:最近,内部凝胶化研究表明,使用加热的尿素和六亚甲基四胺可以对二氧化铈(CeO2)微球的孔隙率和烧结特性具有显着的影响。这种努力已经确定了可以显着改变CEO2微球的初始孔隙的过程变量随着微小的修改。硝酸铈铵和氢氧化铵溶液的样品制备的相对较小的差异对所产生的微球的孔隙率和慢倾注密度具有大的可重复性影响。凝胶化温度的增加,小于0.5k也产生了显着的倾倒密度的增加。如果凝胶化温度升高过高,则不再观察到加热的六亚甲基四胺和尿素的使用,以增加CEO2微球的孔隙率。最终过程变量是分散剂的量,跨度T 80,其可以增加慢倾浓度并产生明显更小的微球。 (c)2017年Elsevier B.V.保留所有权利。

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