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Adsorption of trace metals from seawater onto solid surfaces: Analysis by anodic stripping voltammetry (CROSBI ID 77759)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Cuculić, Vlado ; Branica, Marko Adsorption of trace metals from seawater onto solid surfaces: Analysis by anodic stripping voltammetry // Analyst, 121 (1996), 8; 1127-1131. doi: 10.1039/AN9962101127

Podaci o odgovornosti

Cuculić, Vlado ; Branica, Marko

engleski

Adsorption of trace metals from seawater onto solid surfaces: Analysis by anodic stripping voltammetry

The rates and equilibria of the adsorption of dissolved Cd(II), Pb(II), and Cu(II) (at concentration levels of 2x10-8 and 8x10-8 mol/l) from seawater and from a 0.55 mol/l NaCl model solution onto electrochemical glass and quartz cells and Nalgene (fluorinated ethylene- poly(propylene) sample bottles with and without added glass beads at pH 6.2 and 8.1 were measured by differential pusle anodic stripping voltammetry. Lead(II) shows higher adsorption than Cu(II), whereas no adsorption of Cd(II) is observed. Nalgene is the most suitable material for samplers and storage bottles, whereas quartz is the best material for the electroanalytical vessels. The maximum surface covering concentrations of Pb(II) (veliko slovo gama neizmjerno) (from seawater at pH 8.1) on the surfaces of a quartz cell, a glass cell, a Nalgene bottle and glass beads were found to be 2.0 x 10- 11, , 3.1x10-11, 2, 0x10-12 and 2.6x10-11 mol cm-2, respectively. The maximum Pb capacities of the glass and quartz cells with the electrode assembly were calculated to be 2.3x10-9 and 1.5x10-9 mol, respectively. A procedure is proposed for the measurement of the trace metal capacity of the cell and the electrode assembly used in the experiments, for the determination of the metal concentration in natural samples.

adsorption ; isotherm ; cadmium(II) ; lead(II) ; copper(II) ; seawater ; glass ; quartz ; fluorinated ethylene-poly(propylene)

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Podaci o izdanju

121 (8)

1996.

1127-1131

objavljeno

0003-2654

1364-5528

10.1039/AN9962101127

Povezanost rada

Kemija

Poveznice
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