Zinc solubility and fractionation in cultivated calcareous soils irrigated with wastewater

Sci Total Environ. 2015 Jun 15:518-519:310-9. doi: 10.1016/j.scitotenv.2015.03.016. Epub 2015 Mar 12.

Abstract

The solubility, lability and fractionation of zinc in a range of calcareous soils from Peshawar, Pakistan were studied (18 topsoils and 18 subsoils). The lability (E-value) of Zn was assessed as the fraction isotopically exchangeable with (70)Zn(2+); comparative extractions included 0.005 M DTPA, 0.43 M HNO3 and a Tessier-style sequential extraction procedure (SEP). Because of the extremely low concentration of labile Zn the E-value was determined in soils suspended in 0.0001 M Na2-EDTA which provided reliable analytical conditions in which approximately 20% of the labile Zn was dissolved. On average, only 2.4% of soil Zn was isotopically exchangeable. This corresponded closely to Zn solubilised by extraction with 0.005 DTPA and by the carbonate extraction step (F1+F2) of the Tessier-style SEP. Crucially, although the majority of the soil CaCO3 was dissolved in F2 of the SEP, the DTPA dissolved only a very small proportion of the soil CaCO3. This suggests a superficial carbonate-bound form of labile Zn, accessible to extraction with DTPA and to isotopic exchange. Zinc solubility from soil suspended in 0.01 M Ca(NO3)2 (PCO2 controlled at 0.03) was measured over three days. Following solution speciation using WHAM(VII) two simple solubility models were parameterised: a pH dependent 'adsorption' model based on the labile (isotopically exchangeable) Zn distribution coefficient (Kd) and an apparent solubility product (Ks) for ZnCO3. The distribution coefficient showed no pH-dependence and the solubility model provided the best fit to the free ion activity (Zn(2+)) data, although the apparent value of log10 Ks (5.1) was 2.8 log units lower than that of the mineral smithsonite (ZnCO3).

Keywords: Calcareous soils; DTPA extraction; E-values; Metal solubility; Pakistan; Wastewater; Zinc.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Agricultural Irrigation / methods*
  • Calcium Carbonate / chemistry
  • Environmental Monitoring
  • Pakistan
  • Soil / chemistry
  • Soil Pollutants / analysis
  • Soil Pollutants / chemistry*
  • Solubility
  • Waste Disposal, Fluid / methods*
  • Wastewater / chemistry*
  • Zinc / analysis
  • Zinc / chemistry*

Substances

  • Soil
  • Soil Pollutants
  • Waste Water
  • Calcium Carbonate
  • Zinc