Kadja Grandprix T M, Azhari Noerma J, Mukti Rino R, Khalil Munawar
Division of Inorganic and Physical Chemistry, Faculty of Mathematics and Natural Sciences, Institut Teknologi Bandung, Jalan Ganesha no. 10, Bandung 40132, Indonesia.
Center for Catalysis and Reaction Engineering, Institut Teknologi Bandung, Jalan Ganesha no. 10, Bandung 40132, Indonesia.
ACS Omega. 2020 Dec 24;6(1):925-933. doi: 10.1021/acsomega.0c05070. eCollection 2021 Jan 12.
The solvent-free, seed-directed synthesis using natural precursors has emerged as a sustainable route for the synthesis of zeolite. Albeit the significant progress in the synthesis techniques, the crystallization behaviors of zeolites are somewhat elusive. Herein, we performed a detailed investigation of the crystallization behaviors of ZSM-5 zeolites synthesized through the solvent-free, seed-directed route using rice husk silica as starting materials. The crystallization at 180 °C is completed rapidly in 10 h, with an ultrahigh zeolite yield of at least 95%. Moreover, we evaluated the crystallization kinetics at different temperatures using the nonlinear Avrami equation and found instantaneous nucleation with three-dimensional growth in the studied temperature range, with activation energies for nucleation, transition, and crystal growth of 137, 51, and 51 kJ mol, respectively, indicating that nucleation is the rate-determining step. Further investigation of the structural and morphological evolution revealed a preference for secondary nucleation over the seed-growth mechanism. Crystallization proceeds structural rearrangement within the solid system. We anticipate that our work will provide extensive insights that increase the understanding of zeolite crystallization and expand the highly sustainable production of zeolites.
使用天然前驱体的无溶剂、种子导向合成法已成为一种可持续的沸石合成途径。尽管合成技术取得了重大进展,但沸石的结晶行为仍有些难以捉摸。在此,我们对以稻壳二氧化硅为起始原料,通过无溶剂、种子导向途径合成的ZSM-5沸石的结晶行为进行了详细研究。在180°C下,结晶在10小时内迅速完成,沸石产率至少为95%,超高。此外,我们使用非线性Avrami方程评估了不同温度下的结晶动力学,发现在研究的温度范围内为瞬时成核和三维生长,成核、转变和晶体生长的活化能分别为137、51和51 kJ/mol,表明成核是速率决定步骤。对结构和形态演变的进一步研究表明,二次成核优于种子生长机制。结晶过程中固体系统内会发生结构重排。我们预计,我们的工作将提供广泛的见解,增进对沸石结晶的理解,并扩大沸石的高度可持续生产。