Applied Catalysis2022,Vol.30910.DOI:10.1016/j.apcatb.2022.121273

Ultrathin delta-MnO2 nanoribbons for highly efficient removal of a human-related low threshold odorant- acetic acid

Xu, Tongzhou Zhang, Pengyi Zhang, Huiyu
Applied Catalysis2022,Vol.30910.DOI:10.1016/j.apcatb.2022.121273

Ultrathin delta-MnO2 nanoribbons for highly efficient removal of a human-related low threshold odorant- acetic acid

Xu, Tongzhou 1Zhang, Pengyi 1Zhang, Huiyu1
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作者信息

  • 1. Tsinghua Univ
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Abstract

Efficient removal of human-emitted gaseous pollutants in indoor air may greatly reduce ventilation-related energy consumption, however few efforts have been made. Here we reported the room and low-temperature catalytic removal of a human-emitted odorant -acetic acid with odor threshold of 5.6 ppb. Ultrathin delta-MnO2 nanoribbons (delta-MnO2 UTNRs) with the thickness of 1-1.5 nm and aspect ratio of 200-600 was synthesized, which produced abundant active oxygen species such as hydroxyl radicals and superoxide at room temperature without light irradiation. Accordingly, as-prepared delta-MnO2 UTNRs could transform acetic acid into CO2 even at room temperature. The 100% one-through removal capacity for ~1 ppm acetic acid was about 20 mg/g, and it could be completely regenerated at 14 & nbsp;C-0. This study opens a new research direction and demonstrates that it is possible to catalytically remove human-emitted gaseous pollutant at low and even at room temperature.

Key words

delta-MnO2/Catalytic removal/Human-emitted VOCs/Indoor air/Ventilation/BIRNESSITE-TYPE MNO2/ROOM-TEMPERATURE OXIDATION/VOLATILE ORGANIC-COMPOUNDS/CATALYTIC-OXIDATION/FORMALDEHYDE OXIDATION/MANGANESE-DIOXIDE/RISK-ASSESSMENT/DECOMPOSITION/TOLUENE/OXIDE

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量13
参考文献量59
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