Stable HBEA zeolite with high surface area and strong acid sites was synthesized from coal fly ash-based silica extract via indirect hydrothermal synthesis. The rapid HBEA hydrothermal crystallization times of 8, 10, and 12Â h were achieved through a reduced molar water fraction in the synthesis composition. The HBEA zeolites prepared from fly ash silica extract exhibited well-defined spheroidal-shaped crystal morphology with uniform particle sizes of 192, 190, or 239Â nm obtained after 8, 10, or 12Â h of synthesis time, respectively. The high surface area and the microporous area of 702 and 722Â m(2)/g were achieved as a function of shorter hydrothermal synthesis durations (10 and 24Â h, respectively) compared to 48 or 72Â h, which resulted in HBEA zeolites with lower surface areas of 538 and 670Â m(2)/g. Likewise, temperature-programmed desorption measurements of fly ash-based HBEA zeolites revealed the presence of weak and strong acid sites in the zeolite. The submicron crystal sizes with a well-defined porosity of HBEA zeolites enhanced the diffusion of anisole and benzoyl chloride molecules toward the active acid sites and hence showed better conversion and selectivity in acylation products. High conversion of benzoyl chloride with anisole was achieved, reaching up to 83% with a 93-96% selectivity toward 4-methoxyacetophenone.
Acylation of Anisole With Benzoyl Chloride Over Rapidly Synthesized Fly Ash-Based HBEA Zeolite.
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作者:Ameh Alechine E, Musyoka Nicholas M, Oyekola Oluwaseun, Louis Benoit, Petrik Leslie F
| 期刊: | Frontiers in Chemistry | 影响因子: | 4.200 |
| 时间: | 2021 | 起止号: | 2021 Jun 18; 9:683125 |
| doi: | 10.3389/fchem.2021.683125 | ||
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