| Literature DB >> 30236939 |
Lizhong Liu1, Juexue Li1, Hongbo Zhang1, Lu Li1, Pin Zhou1, Xianglong Meng1, Mingming Guo1, Jinping Jia1, Tonghua Sun2.
Abstract
γ-MnO2, SmMnO3, and γ-MnO2/SmMnO3 catalysts were prepared by facile methods, wherein the SmMnO3 (SMO) perovskite was synthesized through one-step calcination and the γ-MnO2/SmMnO3 was formed by an in situ growth of γ-MnO2 on the surface of SMO. These materials ware characterized by XRD, SEM-mapping, N2-adsorption, XPS and H2-TPR to investigate their textural properties. Compared with that of SMO and γ-MnO2, the γ-MnO2/SMO shows better performance for catalytic oxidation of aromatic VOCs in wet air (10 vol.%), which may be attributed to its higher surface molar ratio of lattice oxygen to adsorbed oxygen (Olatt/Oads) and better low-temperature reducibility. Besides, for γ-MnO2/SMO catalyst, a successive oxidation route and the inner principle of BETX (benzene, ethylbenzene, toluene, and o-xylene) oxidation were also revealed via various tests and a comprehension of dynamics investigation. Meanwhile, the experiments under simulated realistic exhaust conditions displayed that the γ-MnO2/SmMnO3 is also a good catalyst with high stability for aromatic VOCs oxidation, and fulfilled endurability to high humidity (20 vol.%).Entities:
Keywords: Aromatic VOCs; Catalytic oxidation; Deep; In-situ growth; γ-MnO(2)/SmMnO(3) catalyst
Year: 2018 PMID: 30236939 DOI: 10.1016/j.jhazmat.2018.09.012
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588