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  • The soil solutions were obtained with suction cups from pot experiment with Thlaspi caerulescens J. et C. Presl planted in two types of soil from two localities in the Czech Republic (Píšťany (Fluvisol) and Příbram (Cambisol)). The soil solution was drew–off at the end of vegetation period at the same time when the plant biomass was harvested. The soil solution was analyzed by the anodic stripping voltammetry (ASV) and the cadmium ionic species were detected in unchanged pH (in 10-3 mol.L-1 NaClO4 base electrolyte). The total contents of cadmium were measured by GF-AAS and the total content of Cd was verified by ASV in pH 2 (in 10-2 mol.L-1 HNO3 base electrolyte). The pH depended ionic fractions of Cd in pH 3 were determined by ASV (in 10-3 mol.L-1 HNO3 base electrolyte). The diffusive gradient in thin film technique (DGT) was used for theoretical estimate of available portions of cadmium in the soil solution (Cb) and for characterization of diffusion circumstances in the Diffusive Boundary Layer (F
  • The soil solutions were obtained with suction cups from pot experiment with Thlaspi caerulescens J. et C. Presl planted in two types of soil from two localities in the Czech Republic (Píšťany (Fluvisol) and Příbram (Cambisol)). The soil solution was drew–off at the end of vegetation period at the same time when the plant biomass was harvested. The soil solution was analyzed by the anodic stripping voltammetry (ASV) and the cadmium ionic species were detected in unchanged pH (in 10-3 mol.L-1 NaClO4 base electrolyte). The total contents of cadmium were measured by GF-AAS and the total content of Cd was verified by ASV in pH 2 (in 10-2 mol.L-1 HNO3 base electrolyte). The pH depended ionic fractions of Cd in pH 3 were determined by ASV (in 10-3 mol.L-1 HNO3 base electrolyte). The diffusive gradient in thin film technique (DGT) was used for theoretical estimate of available portions of cadmium in the soil solution (Cb) and for characterization of diffusion circumstances in the Diffusive Boundary Layer (F (en)
  • The soil solutions were obtained with suction cups from pot experiment with Thlaspi caerulescens J. et C. Presl planted in two types of soil from two localities in the Czech Republic (Píšťany (Fluvisol) and Příbram (Cambisol)). The soil solution was drew–off at the end of vegetation period at the same time when the plant biomass was harvested. The soil solution was analyzed by the anodic stripping voltammetry (ASV) and the cadmium ionic species were detected in unchanged pH (in 10-3 mol.L-1 NaClO4 base electrolyte). The total contents of cadmium were measured by GF-AAS and the total content of Cd was verified by ASV in pH 2 (in 10-2 mol.L-1 HNO3 base electrolyte). The pH depended ionic fractions of Cd in pH 3 were determined by ASV (in 10-3 mol.L-1 HNO3 base electrolyte). The diffusive gradient in thin film technique (DGT) was used for theoretical estimate of available portions of cadmium in the soil solution (Cb) and for characterization of diffusion circumstances in the Diffusive Boundary Layer (F (cs)
Title
  • Speciation of Cadmium in Soil Solution from Hyperaccumulating Plant Alpine Penny-Cress
  • Speciace kadmia v půdním roztoku hyperakumulující rostliny Thlaspi caerulescens J. et C. Presl (cs)
  • Speciation of Cadmium in Soil Solution from Hyperaccumulating Plant Alpine Penny-Cress (en)
skos:prefLabel
  • Speciation of Cadmium in Soil Solution from Hyperaccumulating Plant Alpine Penny-Cress
  • Speciace kadmia v půdním roztoku hyperakumulující rostliny Thlaspi caerulescens J. et C. Presl (cs)
  • Speciation of Cadmium in Soil Solution from Hyperaccumulating Plant Alpine Penny-Cress (en)
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  • RIV/60460709:41210/06:16528!RIV07-GA0-41210___
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  • 50;50
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  • P(GA521/06/0496)
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  • 500682
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  • RIV/60460709:41210/06:16528
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  • ASV, Soil Solution, DGT, Speciation, Cadmium, Ionic Portion, Hyperaccumulation, Thlaspi caerulescens J. et C. Presl (en)
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  • [04699C66A6AE]
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  • Brno
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  • Brno
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  • Neuvedeno, 0
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  • The Seventh European Meeting on Environmental Chemistry (EMEC7)
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  • Tlustoš, Pavel
  • Šestáková, Ivana
  • Balík, Jiří
  • Jakl, Michal
  • Dytrtová, Jana
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  • Vysoké učení technické v Brně
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  • 80-214-3320-5
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  • 41210
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