Modelling lake-water photochemistry: three-decade assessment of the steady-state concentration of photoreactive transients (·OH, CO3(-·) and (3)CDOM(∗)) in the surface water of polymictic Lake Peipsi (Estonia/Russia)

Chemosphere. 2013 Mar;90(10):2589-96. doi: 10.1016/j.chemosphere.2012.10.103. Epub 2012 Dec 25.

Abstract

Over the last 3-4 decades, Lake Peipsi water (sampling site A, middle part of the lake, and site B, northern part) has experienced a statistically significant increase of bicarbonate, pH, chemical oxygen demand, nitrate (and nitrite in site B), due to combination of climate change and eutrophication. By photochemical modelling, we predicted a statistically significant decrease of radicals ·OH and CO3(-·) (site A, by 45% and 35%, respectively) and an increase of triplet states of chromophoric dissolved organic matter ((3)CDOM(∗); site B, by ∼25%). These species are involved in pollutant degradation, but formation of harmful by-products is more likely with (3)CDOM(∗) than with ·OH. Therefore, the photochemical self-cleansing ability of Lake Peipsi probably decreased with time, due to combined effects of climate change and eutrophication. In different environments (e.g. Lake Maggiore, NW Italy), ecosystem restoration policies had the additional advantage of enhancing sunlight-driven detoxification, suggesting that photochemical self-cleansing would be positively correlated with lake water quality.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Biological Oxygen Demand Analysis
  • Estonia
  • Free Radicals / analysis*
  • Fresh Water / analysis*
  • Hydroxyl Radical / analysis
  • Lakes / chemistry*
  • Models, Chemical*
  • Nitrites / analysis
  • Photochemical Processes
  • Principal Component Analysis
  • Russia
  • Seasons
  • Water Pollutants, Chemical / analysis

Substances

  • Free Radicals
  • Nitrites
  • Water Pollutants, Chemical
  • Hydroxyl Radical