Issue 51, 2022

Catalytic ozonation of dichloromethane at low temperature and even room temperature on Mn-loaded catalysts

Abstract

Five Mn-loaded catalysts were synthesized on γ-Al2O3, TiO2, ZrO2, nano γ-Al2O3 and nanoZrO2 supports. The catalytic ozonation of DCM (dichloromethane) was evaluated under industrial conditions (i.e., temperature, O3 input, H2O and SO2 content). According to results, >90% DCM conversion without O3 residue was achieved for all samples at 120 °C and an O3/DCM ratio of 6. At 20–120 °C, the highest Mn3+ content, abundant surface oxygen species and more weak acid sites led to the best performance of Mn/nanoAl2O3 (M/A-II). At 20 °C and 120 °C, 80% and 95% DCM can be degraded respectively on M/A-II at 20 °C with matched surface oxygen species and acidity. An O3/DCM ratio of 6 was optimal for performance and economy. For the effects of complex exhaust, both H2O and SO2 deactivated M/A-II. The H2O-induced deactivation was recoverable and also removed surface-deposited chlorine-containing species, enhancing the HCl selectivity. Finally, the Cl equilibrium of the reaction was comprehensively analyzed.

Graphical abstract: Catalytic ozonation of dichloromethane at low temperature and even room temperature on Mn-loaded catalysts

Supplementary files

Article information

Article type
Paper
Submitted
15 Sep 2022
Accepted
14 Nov 2022
First published
22 Nov 2022
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2022,12, 33429-33439

Catalytic ozonation of dichloromethane at low temperature and even room temperature on Mn-loaded catalysts

Y. Duan, P. Liu, F. Lin, Y. He, Y. Zhu and Z. Wang, RSC Adv., 2022, 12, 33429 DOI: 10.1039/D2RA05828F

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