首页|Broadening synthetic scope of SSZ-39 zeolite for NH3-SCR: A fast and direct route from amorphous starting materials

Broadening synthetic scope of SSZ-39 zeolite for NH3-SCR: A fast and direct route from amorphous starting materials

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The inevitable use of FAU-type zeolites and long synthesis time bottleneck the mass production of SSZ-39 zeolite, a next-generation catalyst for selective catalytic reduction of NOx by ammonia (NH3-SCR). Herein, fast synthesis of SSZ-39 zeolites directly from colloidal silica and sodium aluminate is achieved with various reactant compositions, including a cost-effective low organic structure-directing agent-consuming condition and a scarcely reported KOH-containing condition. The reactant alkalinity and NaOH content are critical to the phase selectivity and fast crystallization, and partially replacing Na+ with K+ can eliminate the formation of gmelinite impurity. With optimized conditions, synthesis can be completed within 4 h without aging process in an autoclave, and even within 80 min by fast heating in a tubular reactor. Outstanding hydrothermal stability and NH3-SCR activity of the Cu-exchanged samples prove such fast and direct synthesis route a promising way to efficiently produce high-quality SSZ-39 zeolites for further applications.

SSZ-39ZeolitesHydrothermal synthesisHydrothermal stabilitySelective catalytic reductionSEED-ASSISTED SYNTHESISCHA-TYPE ZEOLITEULTRAFAST SYNTHESISINTERZEOLITE CONVERSIONMETHANOLFAUAEICATALYSTCRYSTALLIZATIONCU-SSZ-39

Fujinuma, Haruko、Yu, Jingyun、Yu, Sijing、Anand, Chokkalingam、Yanaba, Yutaka、Okubo, Tatsuya、Wakihara, Toru、Hu, Peidong、Iyoki, Kenta

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Univ Tokyo

2022

Microporous and mesoporous materials

Microporous and mesoporous materials

EISCI
ISSN:1387-1811
年,卷(期):2022.330
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