Mitigation of hazardous toluene via ozone-catalyzed oxidation using MnOx/Sawdust biochar catalyst

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초록

This study investigated catalytic ozone oxidation using a sawdust char (SDW) catalyst to remove hazardous toluene emitted from the chemical industry. The catalyst properties were analyzed by proximate, ultimate, nitrogen adsorption-desorption isotherms, Fourier-transform infrared, and X-ray photoelectron spectroscopy analyses. In addition, hydrogen-temperature programmed reduction experiments were conducted to analyze the catalyst properties. The specific area and formation of micropores of SDC were improved by applying KOH treatment. MnOx/SDC-K3 exhibited a higher toluene removal efficiency of 89.7% after 100 min than MnOx supported on activated carbon (MnOx/AC) with a removal efficiency of 6.6%. The higher (Oads (adsorbed oxygen)+Ov(vacancy oxygen))/OL (lattice oxygen) and Mn3+/Mn4+ ratios of MnOx/SDC-K3 than those of MnOx/AC seemed to be important for the catalytic oxidation of toluene.

키워드

Ozone -catalyzed oxidationHazardous tolueneMnOx/biocharModified biocharKOH activationSUPPORTED METAL-OXIDESHIGH-SURFACE-AREAACTIVATED CARBONMNOX/GAMMA-ALUMINABENZENE OXIDATIONGASEOUS BENZENEOZONATIONREMOVALTEMPERATUREPYROLYSIS
제목
Mitigation of hazardous toluene via ozone-catalyzed oxidation using MnOx/Sawdust biochar catalyst
저자
Cha, Jin SunKim, Young-MinLee, Im HackChoi, Yong JunRhee, Gwang HoonSong, HocheolJeon, Byong-HunLam, Su ShiungKhan, Moonis AliAndrew Lin, Kun-YiChen, Wei-HsinPark, Young-Kwon
DOI
10.1016/j.envpol.2022.119920
발행일
2022-11
유형
Article
저널명
Environmental Pollution
312
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