Effect of Soil Solution Properties and Cu2+ Co-Existence on the Adsorption of Sulfadiazine onto Paddy Soil

Int J Environ Res Public Health. 2021 Dec 19;18(24):13383. doi: 10.3390/ijerph182413383.

Abstract

Paddy soils are globally distributed and saturated with water long term, which is different from most terrestrial ecosystems. To better understand the environmental risks of antibiotics in paddy soils, this study chose sulfadiazine (SDZ) as a typical antibiotic. We investigated its adsorption behavior and the influence of soil solution properties, such as pH conditions, dissolved organic carbon (DOC), ionic concentrations (IC), and the co-existence of Cu2+. The results indicated that (1) changes in soil solution pH and IC lower the adsorption of SDZ in paddy soils. (2) Increase of DOC facilitated the adsorption of SDZ in paddy soils. (3) Cu2+ co-existence increased the adsorption of SDZ on organic components, but decreased the adsorption capacity of clay soil for SDZ. (4) Further FTIR and SEM analyses indicated that complexation may not be the only form of Cu2+ and SDZ co-adsorption in paddy soils. Based on the above results, it can be concluded that soil solution properties and co-existent cations determine the sorption behavior of SDZ in paddy soils.

Keywords: Cu2+ co-existence; adsorption; paddy soils; soil properties; sulfadiazine.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adsorption
  • Dissolved Organic Matter
  • Ecosystem
  • Soil Pollutants* / analysis
  • Soil*
  • Sulfadiazine

Substances

  • Dissolved Organic Matter
  • Soil
  • Soil Pollutants
  • Sulfadiazine