Literature DB >> 31418541

Nanodispersed Mn3O4/γ-Al2O3 for NO2 Elimination at Room Temperature.

Lian Wang1,2, Guangyan Xu1, Jinzhu Ma1,3,2, Yunbo Yu1,3,2, Qingxin Ma1,3,2, Kuo Liu1, Changbin Zhang1,2, Hong He1,3,2.   

Abstract

Adsorption is an efficient method for atmospheric NOx abatement under ambient conditions; however, traditional adsorbents suffer from limited adsorption capacity and byproduct formation. Developing a low-cost material with high capacity for atmospheric NO2 elimination remains a challenge. Here, we synthesized a nanodispersed Mn3O4/γ-Al2O3 (Mn/Al) material that exhibits excellent ability to remove NO2. The 10 wt % Mn/Al sample showed the highest removal capacity, with 247.6 mgNO2/gMn/Al, which is superior to that of activated carbon (42.6 mgNO2/g). There were no byproducts produced when Mn/Al was tested with ppb-level NO2. The NO2 abatement mechanism with Mn/Al is different from physisorption or chemisorption. NO2 removal is mainly a catalytic process in air, during which surface hydroxyls and lattice oxygen are involved in the oxidation of NO2 to nitrate. In contrast, a chemical reaction between Mn3+ and NO2 is dominant in N2, where Mn3+ is converted into Mn4+ and NO2 is reduced to nitrite. Washing with deionized water is an effective and convenient method for the regeneration of saturated Mn/Al, and an 86% adsorption capacity was recovered after one washing. The results suggest that this low-cost Mn/Al material with easy preparation and regeneration is a promising candidate material for atmospheric NO2 elimination.

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Year:  2019        PMID: 31418541     DOI: 10.1021/acs.est.9b00941

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  1 in total

1.  A visible-light-responsive TaON/CdS photocatalytic film with a ZnS passivation layer for highly extraordinary NO2 photodegradation.

Authors:  Dandan Yan; Tingting Wei; Wencheng Fang; Zhanbin Jin; Fengyan Li; Zhinan Xia; Lin Xu
Journal:  RSC Adv       Date:  2020-09-03       Impact factor: 3.361

  1 in total

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