Torna ai risultati
Scheda bibliografica · Consultazione e accesso
Artículo

Morphology–acidity synergy in ZSM-5 for selective para-xylene synthesis via CO2/H2-mediated toluene methylation

Bilyu Hong et al · Elsevier · 2026

Accesso aperto disponibile
Lettura rapida. Controlla i dati essenziali della risorsa e accedi al contenuto con il pulsante principale. La scheda mostra solo le informazioni necessarie per identificare, citare e aprire l’opera.

Accesso alla risorsa

Apri il contenuto dall’opzione principale o scegli un’altra fonte disponibile.

DOAJ DOAJ Articles
Entrar por DOAJ
Accesso principale

Accesso aperto disponibile

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Apri risorsa

Riepilogo

Descripción general del contenido del recurso.

CO2/H2-mediated toluene methylation over metal oxide–zeolite bifunctional catalyst offers a sustainable route for para-xylene (PX) synthesis, yet how zeolite morphology and acidity synergistically govern this coupled process remains unclear. Herein, we report a systematic approach to improve PX yield through the morphological tailoring and elemental doping of ZSM-5 (Z5) zeolites. A series of Z5 with varied morphologies–sheet, hollow, nano, and spheroidal–were synthesized to optimize product diffusion, while Zn, P, and Si dopants were introduced to modulate the distribution and strength of acid sites. The optimized PdZnZrOx–Si/P/sheet-ZnZ5 catalyst achieved 87.0% of PX selectivity with 92.5% of xylene in CO-free products (360 °C, 0.5 MPa, and gas hourly space velocity (GHSV) = 18,000 mL g−1 h−1). Mechanistic studies reveal that methyleneoxy (CH2O*) and/or methoxy (CH3O*) species, originating from formate (HCOO*) species, act as the plausible reactive intermediates for methylation reaction, and that the synergy between short b-axis diffusion paths and tailored acidity effectively suppresses PX isomerization, overcoming the thermodynamic limitations of xylene isomer distributions. This work establishes an apparent structure–diffusion–acidity relationship and provides a rational design strategy for kinetically controlling para-selectivity in tandem catalytic systems beyond thermodynamic constraints.

Come citare

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, B. H. E. (2026). Morphology–acidity synergy in ZSM-5 for selective para-xylene synthesis via CO2/H2-mediated toluene methylation. https://doi.org/10.1016/j.jcou.2026.103417

MLA

al, Bilyu Hong et. "Morphology–acidity synergy in ZSM-5 for selective para-xylene synthesis via CO2/H2-mediated toluene methylation." 2026. https://doi.org/10.1016/j.jcou.2026.103417.

Chicago

al, Bilyu Hong et. 2026. "Morphology–acidity synergy in ZSM-5 for selective para-xylene synthesis via CO2/H2-mediated toluene methylation.". https://doi.org/10.1016/j.jcou.2026.103417.

Harvard

al, B. H. E. 2026, Morphology–acidity synergy in ZSM-5 for selective para-xylene synthesis via CO2/H2-mediated toluene methylation, Elsevier, available at: https://doi.org/10.1016/j.jcou.2026.103417 [Accessed 8 Aug. 2026].

Condividi e stampa

Salva la scheda, copia il link permanente o stampala in PDF.

Esporta riferimento

Esporta il record nei formati più comuni per usarlo con un gestore bibliografico.

Dettagli della risorsa

Informazioni bibliografiche utili per verificare che sia il materiale corretto.

Titolo
Morphology–acidity synergy in ZSM-5 for selective para-xylene synthesis via CO2/H2-mediated toluene methylation
Autore / collaboratori
Bilyu Hong et al
Editore
Elsevier
Anno di pubblicazione
2026
ISSN
2212-9839
ISSN
2212-9839
Lingua
Inglés

Soggetti

Esplora risorse correlate a partire da questi soggetti.

Copiato