Redox potential research in the field of balneochemistry: case study on equilibrium approach to bioactive elements in therapeutic waters

Int J Biometeorol. 2020 May;64(5):815-826. doi: 10.1007/s00484-020-01871-7. Epub 2020 Feb 11.

Abstract

In some countries (e.g. Poland, Czechia, Slovakia, Russia, Germany), oxidation-reduction potential (ORP) measurements are required to document the quality of groundwater which are planned to be used as therapeutic waters. ORP is still rarely studied and not fully availed in therapeutic water research. Studies of ORP in various types of therapeutic, mineral and thermal waters in sites of Poland integrated with geochemical equilibrium approach were employed to characterize two redox-sensitive and bioactive elements, i.e. iron and sulphur. Studied waters present reducing conditions (EH between - 406 and - 41 mV) at outflow or extraction sites; however, they significantly differ in terms of total dissolved solids, temperature, and iron, sulphur(II) and sulphate concentrations. These result in recognizable differences, e.g. in terms of saturation state with respect to aquifer rock minerals and the dominating forms of occurrence of elements studied disclosed on the stability field diagrams. Considering the methodological determinants, ORP orchestrated with geochemical modelling tools might be successfully applied for studying natural linkages between various groundwater in natural systems, protecting the therapeutic water resource, and identifying the changes of water quality both at exploitation sites (springs, wells) and treatment places.

Keywords: Geochemical modelling; Groundwater geochemistry; Iron; Oxidation-reduction potential; Sulphur; Therapeutic water.

MeSH terms

  • Environmental Monitoring
  • Germany
  • Groundwater*
  • Oxidation-Reduction
  • Poland
  • Russia