This study investigates the reactivity and removal kinetics of Cu and Zn onto mixed mineral systems from aqueous solution related to acid mine drainage impacted areas. The sorbents used were kaolinite, Al-montmorillonite, goethite, and their mixtures. The effects of surface charge, proton coefficient, and sorption kinetics were studied at room temperature (23±2 °C). Using an empirical model, mineral mixing reduced the exchange of protons for sorbing ions and the acidity of the reactive sites, thus impeding Cu and Zn removal by proton exchange. Based on the amount of Cu and Zn sorbed on the mixed mineral suspensions at ionic strength 0.01 to 0.1 M and pH 4, it is suggested that Cu and Zn removal from aqueous solution was by both inner and ou...
In this study, we investigated the application of sludge waste obtained from a coal mine drainage tr...
This study investigates the sorption of heavy metallic ions (HMIs), specifically lead (Pb2+), copper...
This paper investigates the underlying mechanism of uptake from aqueous solution of divalent metal c...
This study investigates the reactivity and removal kinetics of Cu and Zn onto mixed mineral systems ...
This study investigates Cu and Zn removal onto binary mixed mineral sorbents from simulated wastewat...
This study investigates sorption of Cu and Zn contained in natural mine wastewater, using mixed mine...
Toxic metals contamination of waters, soils and sediments can seriously affect plants, animals and h...
Heavy metals, including copper, are a serious environmental problem today. As an essential part of a...
The adsorption properties of natural zeolite (clinoptilolite) has been studied in order to determine...
Background: The presence of heavy metals in aquatic and terrestrial ecosystems causes harmful effect...
The present investigation is devoted to simultaneous sorption recovery of copper (II) and zinc (I...
We reacted the water extract of a milling waste, containing concentrations of Cu, Cd, and Zn in exce...
This paper investigates the underlying mechanism of uptake from aqueous solution of divalent metal c...
In this study, the removal of Cu(II) and Zn(II) by new natural native vermiculite and kaolinite from...
This paper investigates the underlying mechanism of uptake from aqueous solution of divalent metal c...
In this study, we investigated the application of sludge waste obtained from a coal mine drainage tr...
This study investigates the sorption of heavy metallic ions (HMIs), specifically lead (Pb2+), copper...
This paper investigates the underlying mechanism of uptake from aqueous solution of divalent metal c...
This study investigates the reactivity and removal kinetics of Cu and Zn onto mixed mineral systems ...
This study investigates Cu and Zn removal onto binary mixed mineral sorbents from simulated wastewat...
This study investigates sorption of Cu and Zn contained in natural mine wastewater, using mixed mine...
Toxic metals contamination of waters, soils and sediments can seriously affect plants, animals and h...
Heavy metals, including copper, are a serious environmental problem today. As an essential part of a...
The adsorption properties of natural zeolite (clinoptilolite) has been studied in order to determine...
Background: The presence of heavy metals in aquatic and terrestrial ecosystems causes harmful effect...
The present investigation is devoted to simultaneous sorption recovery of copper (II) and zinc (I...
We reacted the water extract of a milling waste, containing concentrations of Cu, Cd, and Zn in exce...
This paper investigates the underlying mechanism of uptake from aqueous solution of divalent metal c...
In this study, the removal of Cu(II) and Zn(II) by new natural native vermiculite and kaolinite from...
This paper investigates the underlying mechanism of uptake from aqueous solution of divalent metal c...
In this study, we investigated the application of sludge waste obtained from a coal mine drainage tr...
This study investigates the sorption of heavy metallic ions (HMIs), specifically lead (Pb2+), copper...
This paper investigates the underlying mechanism of uptake from aqueous solution of divalent metal c...