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Two-Dimensional Visualization and Quantification of Labile, Inorganic Plant Nutrients and Contaminants in Soil
Published on: September 1, 2020
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Tracing anthropogenic thallium in soil using stable isotope compositions
Michael Kersten1, Tangfu Xiao, Katharina Kreissig
1Geosciences Institute, Johannes Gutenberg-University , D-55099 Mainz, Germany.
Environmental Science & Technology
|July 25, 2014
Summary
Thallium stable isotope data successfully apportioned soil contamination for the first time. This method confirmed anthropogenic cement kiln dust emissions as the source of heavy thallium in soils.
Area of Science:
- Environmental Geochemistry
- Isotope Geochemistry
- Trace Metal Analysis
Background:
- Cement production can release thallium (Tl) into the environment.
- Understanding the source of Tl contamination in soils is crucial for environmental risk assessment.
Purpose of the Study:
- To utilize stable thallium isotope data for the first time to apportion Tl contamination sources in soils.
- To distinguish between geogenic Tl background and anthropogenic Tl emissions.
Main Methods:
- Analysis of thallium (Tl) stable isotope compositions (ε(205)Tl) in soil profiles and cement kiln dust (CKD).
- Application of binary mixing models using Tl isotope data and Tl concentrations.
- Comparison of Tl isotope signatures in soils, CKD, pyrite, and a biological sample (green cabbage).
Main Results:
- Soil Tl isotope data exhibited a binary mixing relationship between geogenic background (ε(205)Tl ≈ -4) and Tl emissions (ε(205)Tl ≈ ±0).
- Cement kiln dust (CKD) and associated pyrite showed similar Tl isotope compositions (ε(205)Tl ≈ ±0) to the contaminated topsoils.
- Significant biological isotope fractionation of Tl was observed in green cabbage (ε(205)Tl -2.5 to -5.4), distinct from the Lengerich topsoil signature.
Conclusions:
- Stable thallium isotope analysis is a powerful tool for apportioning Tl contamination sources in soils.
- Anthropogenic Tl emissions from cement processing were confirmed as the source of heavy Tl in Lengerich topsoils.
- Isotope data effectively complements receptor modeling for toxic trace metals like thallium.
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