Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
A kinetic approach on hexavalent chromium removal with metallic iron
This paper examines the mechanism of Cr(VI) removal with Fe(0), and the possible effect of various experimental parameters, from a kinetic perspective. The experimental data was analyzed using five different kinetic models: three for chemical reactions and two for adsorption processes. It was found that the process fitted well to the zero-order kinetic model for all investigated systems, excepting experiments conducted at 6 [degrees]C and those with nano-Fe(0), when the process followed the Ho's pseudo second-order model. Therefore, even though, under acidic conditions, chemical reduction can be generally considered as the main mechanism of Cr(VI) removal with Fe(0), under some experimental conditions (e.g. when working with nano-Fe(0) or at low temperatures), adsorption seems to be the dominant removal path. The enhanced Cr(VI) removal noticed in co-presence of SO.sub.4.sup.2- and Cl.sup.- anions reiterates the significance of the secondary reductant Fe(II) within the process of Cr(VI) removal with Fe(0).
A kinetic approach on hexavalent chromium removal with metallic iron
This paper examines the mechanism of Cr(VI) removal with Fe(0), and the possible effect of various experimental parameters, from a kinetic perspective. The experimental data was analyzed using five different kinetic models: three for chemical reactions and two for adsorption processes. It was found that the process fitted well to the zero-order kinetic model for all investigated systems, excepting experiments conducted at 6 [degrees]C and those with nano-Fe(0), when the process followed the Ho's pseudo second-order model. Therefore, even though, under acidic conditions, chemical reduction can be generally considered as the main mechanism of Cr(VI) removal with Fe(0), under some experimental conditions (e.g. when working with nano-Fe(0) or at low temperatures), adsorption seems to be the dominant removal path. The enhanced Cr(VI) removal noticed in co-presence of SO.sub.4.sup.2- and Cl.sup.- anions reiterates the significance of the secondary reductant Fe(II) within the process of Cr(VI) removal with Fe(0).
A kinetic approach on hexavalent chromium removal with metallic iron
Gheju, M (Autor:in) / Balcu, I / Enache, A / Flueras, A
2017
Aufsatz (Zeitschrift)
Englisch
BKL:
43.00
Optimizing Hexavalent Chromium Removal in Italy
Wiley | 2024
|Optimizing Hexavalent Chromium Removal in Italy
Wiley | 2024
|Polyaniline coating with various substrates for hexavalent chromium removal
British Library Online Contents | 2015
DOAJ | 2018
|