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Zeolite nanocrystals prepared from zeolite microparticles by a centrifugation-assisted grinding method

机译:由沸石微粒通过离心研磨法制备的沸石纳米晶体

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摘要

Different sizes of zeolite nanocrystals were fabricated from zeolite microparticles using a centrifugation-assisted grinding method. The zeolite nanocrystal formation can be attributed to the Al2O3 bowl mill generation of mechanical stress that fractured zeolite microparticles into smaller fragments. In the present study, the smaller fragments had a wide distribution of size and morphology. Therefore, different sizes of zeolite nanocrystals could be recovered from these smaller fragments by varying the centrifugation process. Zeolite nanocrystal product yields were measured by periodically recovering the nanocrystals from the smaller fragments based on milled zeolite powder. The larger crystals of zeolite were typically irregular in shape, whereas the smaller zeolite nanocrystals tended to be spherical. High product yield of the zeolite nanocrystals was obtained by periodically removing nanocrystals from the milled zeolite powder and recycling the large zeolite particles. Thus, the results from this new hybrid process suggest that it can be used to fabricate differing sizes of zeolite nanocrystals. In addition, the size of the recovered zeolite nanocrystal products was narrow, and the initial zeolite nanocrystal structure was not destroyed by the mechanical stress.
机译:使用离心辅助研磨方法,由沸石微粒制备不同尺寸的沸石纳米晶体。沸石纳米晶体的形成可归因于Al2O3碗磨机产生的机械应力,该机械应力将沸石微粒破碎成较小的碎片。在本研究中,较小的碎片具有广泛的大小和形态分布。因此,通过改变离心过程可以从这些较小的碎片中回收不同尺寸的沸石纳米晶体。通过基于研磨的沸石粉末从较小的碎片中定期回收纳米晶体来测量沸石纳米晶体产物的产率。较大的沸石晶体通常形状不规则,而较小的沸石纳米晶体倾向于球形。通过周期性地从研磨的沸石粉末中除去纳米晶体并回收大的沸石颗粒,可以获得高产率的沸石纳米晶体。因此,这种新的混合过程的结果表明,它可用于制造不同尺寸的沸石纳米晶体。另外,回收的沸石纳米晶体产物的尺寸狭窄,并且初始沸石纳米晶体结构没有被机械应力破坏。

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