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Influence of Crystallization Temperature on Crystal Size and Morphology in the Synthesis of Zeolite NaX

机译:结晶温度对NaX沸石合成中晶体尺寸和形貌的影响

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摘要

Zeolites NaX were prepared by a hydrothermal method and the influences of crystallization temperature on the end products were investigated. The samples synthesized were characterized by powder X-ray diffraction, scanning electron microscopy, transmission electron microscopy and particle size analysis. The results indicated that the products synthesized 25 and 40 degrees C were composed of many closely packed nanocrystals with the average size of around 30 nm, while the products obtained at 60 degrees C exhibited slightly larger nanocrystal sizes. The average crystal particle sizes prepared at 25, 40 and 60 degrees C were measured to be 265, 298 and 602 nm, with their distributions in the ranges of 150-360, 178-420 and 352-794 nm, respectively. Higher crystallization temperature favoured the aggregation of individual nanocrystals, which resulted in the formation of larger steady congregated agglomerates. However, the products synthesized at high temperature (95 degrees C) were big single crystals. The reasons may be attributed to the dominant nucleation due to much slower diffusion rates and crystal growth kinetics at low temperatures.
机译:用水热法制备NaX沸石,研究了结晶温度对最终产物的影响。合成的样品通过粉末X射线衍射,扫描电子显微镜,透射电子显微镜和粒度分析进行表征。结果表明,在25和40摄氏度下合成的产物由许多紧密堆积的纳米晶体组成,平均尺寸约为30 nm,而在60摄氏度下获得的产物呈现出稍大的纳米晶体尺寸。测得在25、40和60摄氏度下制备的平均晶体粒径为265、298和602 nm,它们的分布分别在150-360、178-420和352-794 nm范围内。较高的结晶温度有利于单个纳米晶体的聚集,这导致形成较大的稳定聚集的团聚物。然而,在高温(95℃)下合成的产物是大的单晶。原因可能是由于较低的扩散速率和低温下的晶体生长动力学导致的主要成核作用。

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