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Molecular structures of dissolved and colloidal AsV-FeIII complexes and their roles in the mobilization of AsV under strongly acidic conditions

  • Danni Zhang
  • , Rui Cao
  • , Yu Song
  • , Yumeng Wang
  • , Peiwen Zhang
  • , Ying Wang
  • , Fan Xiao
  • , Shaofeng Wang
  • , Yongfeng Jia

Publication: Contribution to journalJournal articlepeer-review

Abstract

The effect of high concentration of iron (Fe-III) on the speciation and mobility of arsenic (As) under strongly acidic conditions remains unclear. This work studied the redistribution and speciation of As-V and Fe(III )at Fe/As molar ratio of 1-14 and pH 1.5-2.0 in the dissolved, colloidal, and solid phases. Results showed that the elevated Fe-III induced the decomposition of the precipitated poorly crystalline ferric arsenate by forming dissolved ( 0.1 mu m) decreased from 70-90% to less than 20% when the Fe/As molar ratio increased from 1 to 14. The particle size of the bulk samples decreased significantly with the increase of Fe-III concentration. The FTIR results suggested that As-V in dissolved/colloidal As-Fe complexes dominantly occurred as HAsO42- species. The EXAFS results indicated that each HAsO42- coordinated with approximately two Fe atoms in dissolved/colloidal As-Fe complexes at Fe/As >= 2. The findings suggest that high aqueous Fe(III )concentration can promote the mobility of As by forming dissolved/colloidal Fe-As complexes in acidic waters, potentially accelerating As transport from source to downstream in acid mine drainage systems.
Original languageEnglish
Article number128266
Number of pages11
JournalJournal of Hazardous Materials
Volume430
DOIs
Publication statusPublished - 2022
Externally publishedYes

Keywords

  • Arsenic
  • As-V-Fe-III complexes
  • Colloids
  • Mobilization
  • Acidic conditions

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