2019
DOI: 10.1016/j.jhazmat.2019.02.060
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Thallium stable isotope fractionation in white mustard: Implications for metal transfers and incorporation in plants

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Cited by 28 publications
(6 citation statements)
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“…12,34 In Sinapis alba (white mustard), XANES analysis reported spectra similar to aqueous Tl(I) and Tl(I)-acetate; S-coordinated Tl(I) spectra were not related to the plant Tl spectra. 50 In our study, the Tl L III edge XANES spectra of hydrated Brassica samples (ID 10 and ID 11 cultivars) showed that Tl(I) predominates in the aqueous as well as in the solid form (Table S4). This solid form was observed in Tl-enriched crystals in SEM-EDS analysis (Figure 5) and found in inclusions in the margins of fresh leaves (Figure 4).…”
Section: ■ Resultssupporting
confidence: 49%
“…12,34 In Sinapis alba (white mustard), XANES analysis reported spectra similar to aqueous Tl(I) and Tl(I)-acetate; S-coordinated Tl(I) spectra were not related to the plant Tl spectra. 50 In our study, the Tl L III edge XANES spectra of hydrated Brassica samples (ID 10 and ID 11 cultivars) showed that Tl(I) predominates in the aqueous as well as in the solid form (Table S4). This solid form was observed in Tl-enriched crystals in SEM-EDS analysis (Figure 5) and found in inclusions in the margins of fresh leaves (Figure 4).…”
Section: ■ Resultssupporting
confidence: 49%
“…White mustard grown in hydroponics preferentially took up light isotopes (Δ 205 TI plant-source −0.20 to −0.09‰) while heavy isotopes were transported from roots to shoots, particularly at high Tl supply (Δ 205 Tl shoot-root −0.07 to +0.72‰, Vaněk et al, 2019 ). Within shoots, Tl isotope fractionation reached Δ 205 Tl shoot-root of 0.43‰ ( Kersten et al, 2014 ; Rader et al, 2019 ; Vaněk et al, 2019 ).…”
Section: Isotope Fractionation In Plantsmentioning
confidence: 99%
“…White mustard grown in hydroponics preferentially took up light isotopes (Δ 205 TI plant-source −0.20 to −0.09‰) while heavy isotopes were transported from roots to shoots, particularly at high Tl supply (Δ 205 Tl shoot-root −0.07 to +0.72‰, Vaněk et al, 2019 ). Within shoots, Tl isotope fractionation reached Δ 205 Tl shoot-root of 0.43‰ ( Kersten et al, 2014 ; Rader et al, 2019 ; Vaněk et al, 2019 ). Although there is no known biological function for Tl, it has been posited that the isotope fractionation between roots and shoots is due to physiologically controlled translocation which may be related to membrane transport and Tl speciation.…”
Section: Isotope Fractionation In Plantsmentioning
confidence: 99%
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“…The bioavailability of Tl in soil depends on the specific sorption, mainly onto specific Mn oxide, birnessite (δ-MnO 2 ) and illite [(K,H 3 O)Al 2 (Al,Si) 4 O 10 (OH) 2 ], being probably the most important Tl scavengers and the general stability of Tl-host phase (Al-Najar et al 2003;Vaněk et al 2013;Grösslová et al 2015). Possibly incongruent leaching of Tl from the soil to the biological/plant material may refer to the Mn-Tl association (Vaněk et al 2019). The physiological availability of Tl into the plant depends mostly on the crop species, storage organ structure, accessibility of plant exudates, state of enzymatic processes, and plant growing strategy (Merian & Clarkson 1991).…”
mentioning
confidence: 99%