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Selective Diffusive Gradients in Thin Films (DGT) for the Simultaneous Assessment of Labile Sr and Pb Concentrations and Isotope Ratios in Soils

[Image: see text] A method using diffusive gradients in thin films (DGT) for the accurate quantification of trace-level (μg L(–1)) Sr and Pb concentrations and isotope ratios [δ(SRM 987)((87)Sr/(86)Sr) and δ(SRM 981)((207)Pb/(206)Pb)] in labile, bioavailable element fractions in soils is reported. T...

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Autores principales: Wagner, Stefan, Santner, Jakob, Irrgeher, Johanna, Puschenreiter, Markus, Happel, Steffen, Prohaska, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9047413/
https://www.ncbi.nlm.nih.gov/pubmed/35427118
http://dx.doi.org/10.1021/acs.analchem.2c00546
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author Wagner, Stefan
Santner, Jakob
Irrgeher, Johanna
Puschenreiter, Markus
Happel, Steffen
Prohaska, Thomas
author_facet Wagner, Stefan
Santner, Jakob
Irrgeher, Johanna
Puschenreiter, Markus
Happel, Steffen
Prohaska, Thomas
author_sort Wagner, Stefan
collection PubMed
description [Image: see text] A method using diffusive gradients in thin films (DGT) for the accurate quantification of trace-level (μg L(–1)) Sr and Pb concentrations and isotope ratios [δ(SRM 987)((87)Sr/(86)Sr) and δ(SRM 981)((207)Pb/(206)Pb)] in labile, bioavailable element fractions in soils is reported. The method is based on a novel poly(tetrafluoroethylene) (PTFE) membrane binding layer with combined di(2-ethyl-hexyl)phosphoric acid (HDEHP) and 4,4′(5′)-bis-t-butylcyclohexano-18-crown-6 (crown-ether) functionality with high selectivity for Sr and Pb (TK100 membrane). Laboratory evaluation of the TK100 DGT showed linear uptake of Sr over time (2–24 h) up to very high Sr mass loadings on TK100 membranes (288 μg cm(–2)) and effective performance in the range of pH (3.9–8.2), ionic strength (0.001–0.1 mol L(–1)), and cation competition (50–160 mg L(–1) Ca in a synthetic soil solution matrix) of environmental interest. Selective three-step elution of TK100 membranes using hydrochloric acid allowed us to obtain purified Sr and Pb fractions with adequate (≥75%) recovery and quantitative (≥96%) matrix reduction. Neither DGT-based sampling itself nor selective elution or mass loading effects caused significant isotopic fractionation. Application of TK100 DGT in natural soils and comparison with conventional approaches of bioavailability assessment demonstrated the method’s unique capability to obtain information on Sr and Pb resupply dynamics and isotopic variations with low combined uncertainty within a single sampling step.
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spelling pubmed-90474132022-04-29 Selective Diffusive Gradients in Thin Films (DGT) for the Simultaneous Assessment of Labile Sr and Pb Concentrations and Isotope Ratios in Soils Wagner, Stefan Santner, Jakob Irrgeher, Johanna Puschenreiter, Markus Happel, Steffen Prohaska, Thomas Anal Chem [Image: see text] A method using diffusive gradients in thin films (DGT) for the accurate quantification of trace-level (μg L(–1)) Sr and Pb concentrations and isotope ratios [δ(SRM 987)((87)Sr/(86)Sr) and δ(SRM 981)((207)Pb/(206)Pb)] in labile, bioavailable element fractions in soils is reported. The method is based on a novel poly(tetrafluoroethylene) (PTFE) membrane binding layer with combined di(2-ethyl-hexyl)phosphoric acid (HDEHP) and 4,4′(5′)-bis-t-butylcyclohexano-18-crown-6 (crown-ether) functionality with high selectivity for Sr and Pb (TK100 membrane). Laboratory evaluation of the TK100 DGT showed linear uptake of Sr over time (2–24 h) up to very high Sr mass loadings on TK100 membranes (288 μg cm(–2)) and effective performance in the range of pH (3.9–8.2), ionic strength (0.001–0.1 mol L(–1)), and cation competition (50–160 mg L(–1) Ca in a synthetic soil solution matrix) of environmental interest. Selective three-step elution of TK100 membranes using hydrochloric acid allowed us to obtain purified Sr and Pb fractions with adequate (≥75%) recovery and quantitative (≥96%) matrix reduction. Neither DGT-based sampling itself nor selective elution or mass loading effects caused significant isotopic fractionation. Application of TK100 DGT in natural soils and comparison with conventional approaches of bioavailability assessment demonstrated the method’s unique capability to obtain information on Sr and Pb resupply dynamics and isotopic variations with low combined uncertainty within a single sampling step. American Chemical Society 2022-04-15 2022-04-26 /pmc/articles/PMC9047413/ /pubmed/35427118 http://dx.doi.org/10.1021/acs.analchem.2c00546 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Wagner, Stefan
Santner, Jakob
Irrgeher, Johanna
Puschenreiter, Markus
Happel, Steffen
Prohaska, Thomas
Selective Diffusive Gradients in Thin Films (DGT) for the Simultaneous Assessment of Labile Sr and Pb Concentrations and Isotope Ratios in Soils
title Selective Diffusive Gradients in Thin Films (DGT) for the Simultaneous Assessment of Labile Sr and Pb Concentrations and Isotope Ratios in Soils
title_full Selective Diffusive Gradients in Thin Films (DGT) for the Simultaneous Assessment of Labile Sr and Pb Concentrations and Isotope Ratios in Soils
title_fullStr Selective Diffusive Gradients in Thin Films (DGT) for the Simultaneous Assessment of Labile Sr and Pb Concentrations and Isotope Ratios in Soils
title_full_unstemmed Selective Diffusive Gradients in Thin Films (DGT) for the Simultaneous Assessment of Labile Sr and Pb Concentrations and Isotope Ratios in Soils
title_short Selective Diffusive Gradients in Thin Films (DGT) for the Simultaneous Assessment of Labile Sr and Pb Concentrations and Isotope Ratios in Soils
title_sort selective diffusive gradients in thin films (dgt) for the simultaneous assessment of labile sr and pb concentrations and isotope ratios in soils
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9047413/
https://www.ncbi.nlm.nih.gov/pubmed/35427118
http://dx.doi.org/10.1021/acs.analchem.2c00546
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