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Investigation on phase transformation mechanism of zeolite NaY under alkaline hydrothermal conditions

机译:碱性水热条件下NaY分子筛的相变机理研究

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摘要

The phase transformation mechanism of zeolite NaY under alkaline hydrothermal conditions was investigated by UV Raman spectroseopy, X-ray diffraction, X-ray fluorescence and scanning electron microscopy techniques. The results revealed that the .products and transformation rate are dependent on the alkalinities. All of the starting and resulting zeolites are constructed with the 4-ring and 6-ring secondary building units. The products have lower Si/Al ratio, higher framework density and smaller pore size, which are more stable under alkaline hydrothermal condition. During the phase transformation the fragments of faujasite are formed, then the fragments combine to form different zeolites depending on basicity. Zeolite NaY crystals are consumed as the reservoir for the transformation products during the recrystallization process. For the first time, a 4-membered ring intermediate was found at the early stage of the recrystallization process. A cooperative interaction of liquid and solid phases is required for inducing the phase transformation.
机译:通过紫外拉曼光谱,X射线衍射,X射线荧光和扫描电镜技术研究了碱式NaY沸石在碱性水热条件下的相变机理。结果表明,产物和转化率取决于碱度。所有起始和最终的沸石均由4环和6环二级结构单元构建。产品具有较低的Si / Al比,较高的骨架密度和较小的孔径,在碱性水热条件下更稳定。在相变过程中,形成八面沸石的碎片,然后根据碱性将这些碎片结合形成不同的沸石。 NaY沸石晶体在重结晶过程中被用作转化产物的储存库。第一次在重结晶过程的早期发现了一个四元环中间体。液相和固相的协同相互作用是诱导相变所必需的。

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