4.7 Article

Effect of iron substitution in cryptomelane on the heterogeneous reaction with isoprene

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 437, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2022.129293

关键词

Fe substitution; Cryptomelane; Isoprene; Adsorption -oxidation; DFT calculation

资金

  1. National Natural Science Foundation of China [42002035, 51878292]
  2. China Post- doctoral Science Foundation [2020M682697, 2020M682715]
  3. Guangdong Basic and Applied Basic Research Foundation [2021A1515011378]
  4. US Department of Energy, Office of Basic Energy Sciences, Division of Chemical, Biological and Geological Sci- ences [DE-FG02-86ER13622]

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Biogenic isoprene is a significant pollutant for regional air quality. The substitution of Fe for Mn in cryptomelane plays a crucial role in enhancing the oxidation of isoprene. The adsorption of isoprene on cryptomelane is influenced by environmental temperature.
Biogenic isoprene is an important pollutant for regional air quality. Being ubiquitously distributed on the earth surface, manganese (hydr)oxides should play a vital role in the transformation of isoprene. Cryptomelane is a typical manganese oxide with isomorphous substitution of Fe for Mn, but less attention has been paid to its heterogeneous reaction with isoprene. When Fe3+ replaces Mn3+, K+ is depleted and Mn3+ is oxidized to Mn4+. In contrast, oxygen vacancies are formed when Fe3+ substitutes Mn4+. Fe substitution creates weak crystallites and abundant mesopores, resulting in the increase of isoprene adsorption. As found by theoretical calculations, the Mn4+-O2- bonds at the cross sections of the tunnels is more active than that on the outer wall of the tunnels. After the adsorption of isoprene, bridging carboxylate species and hydrogen-bonding water are produced and the surface octahedra are distorted, i.e., Mn4+O6 -> Mn3+O6-delta. As the heat facilitates the breakage of Mn4+-O2-, the increase of environmental temperature enhances the oxidation of isoprene. The above findings shed light on the effect of Fe substitution in cryptomelane to enhance the oxidation of isoprene, and illustrates that heterogeneous reaction with isoprene impairs the transformation of other environmental substances on cryptomelane.

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