Oxidative decomposition with PEG-MnO2 catalyst for removal of formaldehyde: Chemical aspects on HCHO oxidation mechanism

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초록

Formaldehyde (HCHO) is a representative indoor pollutant that can adversely affect human health, and research on HCHO removal at room temperature is actively needed. In this study, a carbon-based material, Polyethylene glycol #20000(PEG #20000), is used to prepare PEG-MnO2 by doping on MnO2. Glucose-doped MnO2 (G-MnO2) and birnessite-doped MnO2 (delta-MnO2) are utilized to compare removal efficiencies with PEG-MnO2. The efficiency of PEGMnO(2) is measured to be 96.8 % under the conditions of 60 % relative humidity and GHSV of 240 L.gcat(-1).h(-1). In addition, PEG-MnO2 catalysts demonstrated longer stability by maintaining a constant efficiency for 720 min. The superior performance of PEG-MnO2 is due to the formation of oxygen vacancies after PEG-doping which promote the oxidation of HCHO. Therefore, PEG-MnO2 is expected to attract attention as a catalyst for HCHO removal at room temperature because it is easy to synthesize and has superb catalytic performance.

키워드

Catalyst; Manganese oxide; Polyethylene glycol; Formaldehyde removal; Oxygen vacancy; BIRNESSITE-TYPE MNO2; MANGANESE OXIDE; ACTIVATED CARBON; FTIR; ADSORPTION; METHANOL; ETHANOL; SURFACE; NANOSTRUCTURE; SPECTROSCOPY
제목
Oxidative decomposition with PEG-MnO2 catalyst for removal of formaldehyde: Chemical aspects on HCHO oxidation mechanism
저자
Do, Seong-Bin; Lee, Sung-Eun; Kim, Tae-Oh
DOI
10.1016/j.apsusc.2022.153773
발행일
2022-10-01
유형
Article
저널명
Applied Surface Science
권
598