Manganese-catalysed ozonation of glyoxalic acid in aqueous solutions has been investigated in the pH range 2.0-4.0. The addition of manganese ions (Mn(II) or Mn(IV)) to a glyoxalic acid-ozone system allows the substrate to be oxidized through a mechanism different from that reported for uncatalysed ozonation, as underlined by the formation of methanoic acid. The presence of solid MnO2 results in a further increase in the system reactivity, High levels of mineralization are generally achieved during glyoxalic acid-catalysed ozonation, (C) 2000 Society of Chemical Industry.

Manganese-catalysed ozonation of glyoxalic acid in aqueous solutions

Sanchirico R
2000

Abstract

Manganese-catalysed ozonation of glyoxalic acid in aqueous solutions has been investigated in the pH range 2.0-4.0. The addition of manganese ions (Mn(II) or Mn(IV)) to a glyoxalic acid-ozone system allows the substrate to be oxidized through a mechanism different from that reported for uncatalysed ozonation, as underlined by the formation of methanoic acid. The presence of solid MnO2 results in a further increase in the system reactivity, High levels of mineralization are generally achieved during glyoxalic acid-catalysed ozonation, (C) 2000 Society of Chemical Industry.
2000
Istituto di Ricerche sulla Combustione - IRC - Sede Napoli
catalytic ozonation
glyoxalic acid
manganese dioxide
mechanism
aqueous solution
carboxylic acid
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/292684
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