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Thallium in Technosols from Allchar (North Macedonia): Isotopic and speciation insights

  • Aleš Vaněk (Corresponding author)
  • , Tamara Đorđević
  • , Martin Mihaljevič
  • , Maria Vaňková
  • , Karolína Fizková
  • , Tereza Zádorová
  • , Petra Vokurková
  • , Ivana Galušková
  • , Vít Penížek
  • , Ondřej Drábek
  • , Goran Tasev
  • , Todor Serafimovski
  • , Ivan Boev
  • , Blažo Boev

Publications: Contribution to journalArticlePeer Reviewed

Abstract

Allchar (North Macedonia) mining area is known for anomalous background Tl concentrations. In this study, we combine accurate detection of Tl stable isotope ratios with data on mineralogy/speciation and chemical extraction of Tl in Tl-contaminated Technosol profiles. We demonstrate that Tl in the studied soils varies significantly in both concentration (500 mg/kg-18 g/kg) and isotopic composition (−1.6 and +3.2 of ε205Tl, a ∼0.5‰ spread), which is due to changes in the phase chemistry and/or mineralogy of Tl. Moreover, the observed 205Tl/203Tl ratios do not reflect the extent to which individual soils undergo Tl isotopic fractionation during mineral weathering and soil formation. Clearly, they reflect the initial isotopic signal(s) of the primary ore or ore minerals, and thus, the general history or type of their genesis. As the Tl carriers, various types of Tl–Me-arsenates, mixtures of jarosite and dorallcharite and minor Mn-oxides predominated. We revealed intense adsorption of Tl by the identified Mn-oxides (≤6.7 at.%). It is hypothesized that these phases are of key importance in the fractionation of Tl isotopes, meaning at this type of secondary oxide-soil solution interface. However, model studies involving primary/secondary components (sulfides, sulfates, oxides and arsenates) are required to understand the mechanisms that may lead to post-depositional Tl isotopic redistribution in soils, as well as Tl isotope systematics in mining wastes in general.

Original languageEnglish
Article number124413
JournalEnvironmental Pollution
Volume357
DOIs
Publication statusPublished - 15 Sept 2024

Funding

This research was funded by the grant of the Czech Science Foundation (23-04891S) and supported by the Johannes Amos Comenius Programme (P JAC), project No. CZ.02.01.01/00/22_008/0004605, Natural and anthropogenic georisks. T. \u0110or\u0111evi\u0107 and A. Van\u011Bk also acknowledge the supports of the Austrian Science Fund (FWF) [P 36828-N] and the Ministry of Education, Youth and Sports (M\u0160MT) [P 8J20AT009]. Marie Fayadov\u00E1 is gratefully thanked for her laboratory assistance. Dr. Christopher Ash (UK) is thanked for English editing. Furthermore, the help of anonymous four reviewers significantly improved the quality of the original manuscript version.

Austrian Fields of Science 2012

  • 105113 Crystallography
  • 105116 Mineralogy
  • 105906 Environmental geosciences

Keywords

  • Fractionation
  • Isotope
  • Mining
  • Oxide
  • Soil
  • Waste

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