4.7 Article

Interference between di(2-ethylhexyl) phthalate and heavy metals (Cd and Cu) in a Mollisol during aging and mobilization

Journal

SCIENCE OF THE TOTAL ENVIRONMENT
Volume 836, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.scitotenv.2022.155635

Keywords

Phthalates; Heavy metals; Combined pollution; Pollutant aging; Leaching; Molecular dynamics simulation

Funding

  1. National Natural Science Foundation of China [41877128, 41625002]
  2. National Natural Science Fund for Distinguished Young Scholars [U21A20238]
  3. Heilongjiang Provincial Key Laboratory of Soil Protection and Remediation

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This study investigated the behavior of phthalates and heavy metals in co-existing soil pollution and found that their coexistence affected the dissipation rate and half-life of phthalates, as well as the distribution of heavy metals. The release of trapped pollutants was observed during rainfall events, and the diffusion of phthalates and metal ions exhibited antagonistic behavior.
Diffuse pollution of the soil by phthalates and heavy metals causes numerous concerns. Their respective fates when coexisting require further investigation. In this study, di(2-ethylhexyl) phthalate (DEHP) and Cd/Cu were used as subjects, focusing on their behavior in Mollisols under combined pollution based on their concentration, fractionation, and leaching. The results indicated that when the two pollutants coexist, the dissipation rate of DEHP in the soil decreased, and its half-life was extended from 30.81 to 40.53 (Cd) and 35.40 d (Cu). DEHP altered the distribution of Cd and Cu in the soil, and this effect persisted after most of the DEHP had degraded. Leaching tests showed that the interaction of DEHP with Cd and Cu hindered leaching during the first rainfall event, but as DEHP degraded and Cd/Cu stabilized, the trapped pollutants were gradually released in subsequent rainfall events. Additionally, to investigate the partitioning of pollutants between soil water and solid surfaces, a diffusion model of DEHP and metal ions on the surface of montmorillonite (high specific surface area adsorbents abundant in soils) was built using molecular dynamics simulations. Simulations revealed their density distribution on the clay surface increased synergistically, whereas their diffusion was antagonistic. This study provides basic data and theoretical support concerning the ecological risk assessment of combined phthalate and heavy metals pollution in soil.

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