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Kineticsand Mechanism of the Hydrolysis and RearrangementProcesses within the Assembly–Disassembly–Organization–ReassemblySynthesis of Zeolites

机译:动力学水解重排反应机理组装–拆卸–组织–重组中的流程沸石的合成

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摘要

The hydrolysis (disassembly, D) and rearrangement (organization, O) steps of the assembly–disassembly–organization–reassembly (ADOR) process for the synthesis of zeolites have been studied. Germanium-rich >UTL was subjected to hydrolysis conditions in water to understand the effects of temperature (100, 92, 85, 81, 77, and 70 °C). Samples were taken periodically over an 8–37 h period, and each sample was analyzed by powder X-ray diffraction. The results show that the hydrolysis step is solely dependent on the presence of liquid water, whereas the rearrangement is dependent on the temperature of the system. The kinetics have been investigated using the Avrami–Erofeev model. With increasing temperature, an increase in the rate of reaction for the rearrangement step was observed, and the Arrhenius equation was used to ascertain an apparent activation energy for the rearrangement from the kinetic product of the disassembly (IPC-1P) to the thermodynamic product of the rearrangement (IPC-2P). From this information, a mechanism for this transformation can be postulated.
机译:研究了合成沸石的组装-分解-组织-重新组装(ADOR)过程的水解(分解,D)和重排(组织,O)步骤。富锗的> UTL 在水中经受水解条件以了解温度(100、92、85、81、77和70°C)的影响。在8–37小时内定期采集样品,并通过粉末X射线衍射分析每个样品。结果表明,水解步骤仅取决于液态水的存在,而重排取决于系统的温度。已经使用Avrami-Erofeev模型研究了动力学。随着温度的升高,观察到重排步骤的反应速率增加,并且使用Arrhenius方程确定从分解的动力学产物(IPC-1P)到热力学产物的重排的表观活化能。重新排列(IPC-2P)。根据该信息,可以推测出该变换的机制。

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