Catalytic oxidation of toluene by manganese oxides: Effect of K+ doping on oxygen vacancy
Author:
Publisher
Elsevier BV
Subject
General Environmental Science,General Medicine,Environmental Chemistry,Environmental Engineering
Reference61 articles.
1. Excellent catalytic activity and water resistance of UiO-66-supported highly dispersed Pd nanoparticles for toluene catalytic oxidation;Bi;Appl. Catal.,2020
2. Simulation and optimization of the post plasma-catalytic system for toluene degradation by a hybrid ANN and NSGA-II method;Chang;Appl. Catal.,2019
3. Enrichment cultivation of VOC-degrading bacteria using diffusion bioreactor and development of bacterial-immobilized biochar for VOC bioremediation;Chaudhary;Environ. Pollut.,2023
4. Homogeneous introduction of CeOy into MnOx-based catalyst for oxidation of aromatic VOCs;Chen;Appl. Catal.,2018
5. Simple strategy for the construction of oxygen vacancies on α-MnO2 catalyst to improve toluene catalytic oxidation;Chen;J. Hazard. Mater.,2021
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