1‘‘Capsule’’: Phosphate-induced formation of fluoropyromorphite is primarily responsible for Pb immobilization by phosphate rock, whereas Cu and Zn retention is mainly attributable to the surface adsorption or complexation. The solideliquid interface reaction between phosphate rock (PR) and metals (Pb, Cu, and Zn) was studied. Phosphate rock has the highest affinity for Pb, followed by Cu and Zn, with sorption capacities of 138, 114, and 83.2 mmol/kg PR, respectively. In the PbeCueZn ternary system, competitive metal sorption occurred with sorption capacity reduction of 15.2%, 48.3%, and 75.6 % for Pb, Cu, and Zn, respectively compared to the mono-metal systems. A fractional factorial design showed the interfering effect in the order of PbO...
Toxic metals pollution of water and soil is one of the most environmental concerns. Unlike organic c...
The sorption of Pb, Zn, Cu and Cd from aqueous multiple-species solutions by synthetic hydroxyapatit...
Hypothesis: Phosphate influences the sorption of metals to iron (hydr)oxides. An enhanced formation ...
The solid-liquid interface reaction between phosphate rock (PR) and metals (Pb, Cu, and Zn)was studi...
The solid–liquid interface reaction between phosphate rock (PR) and metals (Pb, Cu, and Zn) was stud...
Heavy metals such as Pb, Cd, Cu, Zn, Hg, Cr, and Ni are the main contaminants of surface water, grou...
Contamination of the environment with toxic metals, such as lead (Pb), represents a serious concern ...
Multi-component sorption studies were carried out for attenuation of divalent heavy metal cations (P...
Heavy metal contamination of soil is an environmental and public health issue of prime interest beca...
‘‘Capsule’’: A mixture of H3PO4 and phosphate rock was effective in metal immobilization. To assess ...
Removal of Pb(2+), Cu(2+), ZD(2+) and Cd(2+) from aqueous solutions by sorption on a natural phospha...
Multi-component sorption studies were carried out for attenuation of divalent heavy metal cations (P...
Multi-component sorption studies were carried out for attenuation of divalent heavy metal cations (P...
In this work Brazilian phosphate rocks, PRs, were used to reduce Pb2+, Cu2+ and Cd2+ concentrations ...
In situ immobilization of metals using various amendments have attracted considerable interest over ...
Toxic metals pollution of water and soil is one of the most environmental concerns. Unlike organic c...
The sorption of Pb, Zn, Cu and Cd from aqueous multiple-species solutions by synthetic hydroxyapatit...
Hypothesis: Phosphate influences the sorption of metals to iron (hydr)oxides. An enhanced formation ...
The solid-liquid interface reaction between phosphate rock (PR) and metals (Pb, Cu, and Zn)was studi...
The solid–liquid interface reaction between phosphate rock (PR) and metals (Pb, Cu, and Zn) was stud...
Heavy metals such as Pb, Cd, Cu, Zn, Hg, Cr, and Ni are the main contaminants of surface water, grou...
Contamination of the environment with toxic metals, such as lead (Pb), represents a serious concern ...
Multi-component sorption studies were carried out for attenuation of divalent heavy metal cations (P...
Heavy metal contamination of soil is an environmental and public health issue of prime interest beca...
‘‘Capsule’’: A mixture of H3PO4 and phosphate rock was effective in metal immobilization. To assess ...
Removal of Pb(2+), Cu(2+), ZD(2+) and Cd(2+) from aqueous solutions by sorption on a natural phospha...
Multi-component sorption studies were carried out for attenuation of divalent heavy metal cations (P...
Multi-component sorption studies were carried out for attenuation of divalent heavy metal cations (P...
In this work Brazilian phosphate rocks, PRs, were used to reduce Pb2+, Cu2+ and Cd2+ concentrations ...
In situ immobilization of metals using various amendments have attracted considerable interest over ...
Toxic metals pollution of water and soil is one of the most environmental concerns. Unlike organic c...
The sorption of Pb, Zn, Cu and Cd from aqueous multiple-species solutions by synthetic hydroxyapatit...
Hypothesis: Phosphate influences the sorption of metals to iron (hydr)oxides. An enhanced formation ...