Arsenate immobilisation and mimetite formation on Pb-modified zeolite under variable aqueous chemistry
Abstract Arsenic contamination in water remains a global challenge, and understanding the mineralogical controls on arsenate sequestration is essential for predicting its behaviour in natural and engineered aqueous systems. This study investigates arsenate immobilisation on Pb-modified clinoptilolite through the precipitation of mimetite (Pb 5 (AsO 4 ) 3 Cl), a sparingly soluble apatite-group mineral. The Pb-modified zeolite (Na-exchanged clinoptilolite containing ~ 70 g Pb/kg), was reacted with As(V) solutions (0.1–50 mg/L) containing 20 mg/L Cl − across pH 2–8 for up to 168 h. Arsenate concentrations decreased rapidly, with measurable uptake within 1 min and up to 99% immobilisation achieved within 1 h at pH 6–8. Lower immobilisation at pH 2–4 reflects reduced mimetite stability and pH-dependent arsenate speciation. Mimetite precipitated directly at the solid-solution interface through the reaction of surface-released Pb 2+ with arsenate and chloride, indicating an interface-controlled process driven by local supersaturation. The mechanism was largely unaffected by competing cations (K + , Mg 2+ , Ca 2+ , Al 3+ , Mn 3+ , Cu 2+ , Ni 2+ , Zn 2+ , Cd 2+ ) and anions (F − , SO 4 2− , PO 4 3− ). Arsenate immobilisation in natural waters from Bad Wildbad (Germany), Złoty Stok (Poland), and the Upper Mur Valley (Austria) varied substantially with solution composition, ranging from 51 to 99%. These results demonstrate that arsenate sequestration in this system is governed by coupled surface-mediated Pb release and secondary mineral precipitation, providing new insight into the controls on arsenic mobility in Pb-bearing environments.
Authors
- Maciej Manecki (ORCID: https://orcid.org/0000-0002-4937-1836)
- Tomasz Bajda (ORCID: https://orcid.org/0000-0003-3849-5558)
- Ewa Stępień (ORCID: https://orcid.org/0009-0003-9756-0628)
- Frederik Dunkel
Institutions
- Montanuniversität Leoben (AT)
- AGH University of Krakow (PL)
Publication Details
- Journal
- Environmental Geochemistry and Health
- Published
- 2026-09-14
- DOI
- https://doi.org/10.1007/s10653-026-03472-6
- Primary Topic
- Arsenic contamination and mitigation
- Type
- article
- Field-Weighted Citation Impact
- 0.00