Uptake mechanism for iodine species to black carbon

Environ Sci Technol. 2013 Sep 17;47(18):10349-55. doi: 10.1021/es401570a. Epub 2013 Aug 27.

Abstract

Natural organic matter (NOM) plays an important role in determining the fate and transport of iodine species such as iodide (I(-)) and iodate (IO3(-)) in groundwater system. Although NOM exists as diverse forms in environments, prior iodine studies have mainly focused on uptake processes of iodide and iodate to humic materials. This study was conducted to determine the iodide and iodate uptake potential for a particulate NOM (i.e., black carbon [BC]). A laboratory-produced BC and commercial humic acid were used for batch experiments to compare their iodine uptake properties. The BC exhibited >100 times greater uptake capability for iodide than iodate at low pH of ~3, while iodide uptake was negligible for the humic acid. The uptake properties of both solids strongly depend on the initial iodine aqueous concentrations. After uptake reaction of iodide to the BC, X-ray absorption fine structure spectroscopy results indicated that the iodide was converted to electrophilic species, and iodine was covalently bound to carbon atom in polycyclic aromatic hydrocarbons present in the BC. The computed distribution coefficients (i.e., Kd values) suggest that the BC materials retard significantly the transport of iodide at low pH in environmental systems containing even a small amount of BC.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Groundwater / chemistry*
  • Humic Substances*
  • Iodates / chemistry*
  • Iodides / chemistry*
  • Iodine / chemistry
  • Soot / chemistry*

Substances

  • Humic Substances
  • Iodates
  • Iodides
  • Soot
  • Iodine