Batch tests have been used to assess the level of the removal of metals (copper, nickel, cobalt, zinc, and chromium, in cationic and in anionic forms) from water at low pH values affected by acid mine drainage. The predominant processes which result in the removal with the use of zero-valent iron (Fe0) in Permeable Reactive Barrier Technology were evaluated. The most probable processes for each metal have been presented in drawings. There are: reductive precipitation leading to the metallic form, co-precipitation mainly with iron in the form of oxides and/or hydroxides and adsorption on the surface of iron corrosion products or on the surface of zero-valent iron
The effects of Aldrich humic acids (HA) on the removal of Zero-valent iron (ZVI) was investigated in...
Abstract Infiltration of stormwater runoff contaminated with metals is often questionable in several...
The paper presents the results of a laboratory investigation conducted to assess the suitability of ...
The subject of the research covered in this paper is the removal of copper (Cu2+) cations from water...
The industrial dumping sites located in the southern provinces of Poland pollute groundwaters with m...
Δημοσίευση σε επιστημονικό περιοδικόSummarization: In the present study, flow-through column experim...
Designing water treatment systems with contaminant removal based on zero-valent iron (ZVI) requires ...
Abstract: In this study, two different mixtures of municipal compost, limestone and zero-valent iron...
<div><p>Designing water treatment systems with contaminant removal based on zero-valent iron (ZVI) r...
This study was aimed to a preliminary evaluation of the applicability of granular Zero-Valent Iron ...
This work presents an evaluation of the remediation efficiency and of the environmental impact of a ...
In this paper, a batch experiment was conducted to evaluate the water quality obtained from using pe...
Abstract In this study, two mixtures of municipal compost, limestone and, optionally, zero-valent i...
Abstract: Acid mine waters can contain high concentrations of metals like iron, aluminum, zinc, uran...
Elemental iron has long been used to recover dissolved metals from surface waters in mineralized zon...
The effects of Aldrich humic acids (HA) on the removal of Zero-valent iron (ZVI) was investigated in...
Abstract Infiltration of stormwater runoff contaminated with metals is often questionable in several...
The paper presents the results of a laboratory investigation conducted to assess the suitability of ...
The subject of the research covered in this paper is the removal of copper (Cu2+) cations from water...
The industrial dumping sites located in the southern provinces of Poland pollute groundwaters with m...
Δημοσίευση σε επιστημονικό περιοδικόSummarization: In the present study, flow-through column experim...
Designing water treatment systems with contaminant removal based on zero-valent iron (ZVI) requires ...
Abstract: In this study, two different mixtures of municipal compost, limestone and zero-valent iron...
<div><p>Designing water treatment systems with contaminant removal based on zero-valent iron (ZVI) r...
This study was aimed to a preliminary evaluation of the applicability of granular Zero-Valent Iron ...
This work presents an evaluation of the remediation efficiency and of the environmental impact of a ...
In this paper, a batch experiment was conducted to evaluate the water quality obtained from using pe...
Abstract In this study, two mixtures of municipal compost, limestone and, optionally, zero-valent i...
Abstract: Acid mine waters can contain high concentrations of metals like iron, aluminum, zinc, uran...
Elemental iron has long been used to recover dissolved metals from surface waters in mineralized zon...
The effects of Aldrich humic acids (HA) on the removal of Zero-valent iron (ZVI) was investigated in...
Abstract Infiltration of stormwater runoff contaminated with metals is often questionable in several...
The paper presents the results of a laboratory investigation conducted to assess the suitability of ...