N-nitrosodimethylamine (NDMA) as a product of potassium permanganate reaction with aqueous solutions of dimethylamine (DMA)

Water Res. 2009 Mar;43(5):1219-28. doi: 10.1016/j.watres.2008.12.005. Epub 2008 Dec 24.

Abstract

The reactivity of permanganate with dimethylamine, as possible path of NDMA formation, has been investigated. The results have shown that potassium permanganate reaction with aqueous solutions of dimethylamine (DMA) leads to the formation of N-nitrosodimethylamine (NDMA). The contact time, the molar ratio of permanganate and DMA, pH and presence of nitrite are the key factors influencing the efficiency of NDMA formation. Significant conversion rates of DMA to NDMA were observed only for the high doses of permanganate, which were many times higher than those typically used in water treatment. This reaction however is of importance for water treatment technology, since it shows the possibility of NDMA formation as a result of oxidation of DMA. It is likely that nitrosation is the main path of the reaction. An important role of MnO2 suspension, formed as a result of permanganate reduction in NDMA formation is emphasized. Significant influence of MnO2 suspension on NDMA formation should draw our attention to the potential impact of MnO2 activated filtration beds on NDMA formation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Ammonia / chemistry
  • Dimethylamines / chemistry*
  • Dimethylnitrosamine / chemistry*
  • Formates / chemistry
  • Free Radical Scavengers / chemistry
  • Hydrogen-Ion Concentration
  • Nitrates / chemistry
  • Nitrites / chemistry
  • Oxidation-Reduction
  • Potassium Permanganate / chemistry*
  • Solutions
  • Sulfites / chemistry
  • Suspensions

Substances

  • Dimethylamines
  • Formates
  • Free Radical Scavengers
  • Nitrates
  • Nitrites
  • Solutions
  • Sulfites
  • Suspensions
  • Potassium Permanganate
  • formic acid
  • Ammonia
  • dimethylamine
  • Dimethylnitrosamine