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Defining aluminum-zoning during synthesis of ZSM-5 zeolites

机译:在合成ZSM-5沸石期间定义铝分区

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ZSM-5 zeolites attract considerable attention owing to their wide range of applications in catalysis and separation. The crystals that are synthesized with tetrapropylammonium ions (TPA(+)) as the template show aluminum-zoning, i.e. aluminum being concentrated in the rim part of the crystal. Here, we study the aluminum distribution within individual crystals as a function of synthesis time and find that the degree of aluminum-zoning evolves. Crystals with inhomogeneous aluminum distribution persist since their emergence from the early stages of hydrothermal treatment. The degree of aluminum-zoning in the crystals increases with the synthesis time, accompanied by an increase in the crystal size and subsequently the formation of a well-defined crystal morphology. This indicates a gradual aluminum migration toward the crystal surface during the course of crystallization. Moreover, the addition of high-aluminum-containing species to the existing crystals preferentially takes place at the late stages of synthesis, which contributes to the inhomogeneous aluminum distribution within a crystal. As a result, the finally formed crystals have not only the largest crystal size but also the highest degree of aluminum-zoning. The insight into the origin of aluminum-zoning that our work provides advances our understanding of the relationship between aluminum distribution in zeolites and the synthesis time to design better catalysts.
机译:由于它们在催化和分离中的广泛应用范围内,ZSM-5沸石引起了相当大的关注。用四丙基铵离子合成的晶体(TPA(+))作为模板显示铝 - 分区,即浓缩在晶体的边缘部分中的铝。在这里,我们将单个晶体内的铝分布作为合成时间的函数研究,并发现铝分区的程度演变。由于它们从水热处理早期阶段的出现,具有非均匀铝分布的晶体。晶体中的铝分区的程度随合成时间而增加,伴随着晶体尺寸的增加,随后形成了明确定义的晶体形态。这表明在结晶过程中朝向晶体表面逐渐迁移。此外,向现有晶体中加入高铝的物质优先于合成的后期进行,这有助于晶体内的不均匀铝。结果,最终形成的晶体不仅具有最大的晶体尺寸,而且具有最大的铝分裂程度。我们的作品的展望达到铝分区的起源,可以提高我们对沸石铝分布与合成时间之间的关系的理解,以及设计更好的催化剂。

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