In this study, the importance of charge interactions during flocculation of Fe3+ in the presence of particles and anions/cations at various pH values was investigated. SiO2, (s) and ZnO(s) were dosed as particles to promote charge interactions and/or serve as a nucleus to accelerate floc formation. In the pH range 6–9, SiO2, (s) is negatively charged, while ZnO(s) carries a positive charge. Ca2+ and HPO4 2- were selected to investigate charge interactions in the water phase. A significant delay in floc growth due to charge repulsion between negatively charged iron species was observed at pHini 9. For positively charged species at pHini 6, a delay in floc growth was observed as well, but to a lesser degree. These effects could be neutralized...
In water treatment processes, the optimal dosage of coagulant is highly dependent of suspended parti...
Separation of ultrafine hematite from quartz and kaolinite gangue minerals using selective flocculat...
Iron oxide nanoparticles are the most used magnetic nanoparticles in biomedical and biotechnological...
In this study, the importance of charge interactions during flocculation of Fe3+ in the presence of ...
Based on the regulating behavior of Fe3+, flocculation and sedimentation tests of iron tailings slur...
Sorption of copper and cadmium ions from aqueous solutions by ferric oxide particles was studied usi...
Our aim was to systematically investigate the influence of anions (HPO4 2−), cations (Ca2+, Mg2+) an...
Fine-grained hematite ore can be concentrated by the process of selective flocculation and dispersio...
Abstract— The cations are needed as stimulants for effective flocculation by the cation-dependent bi...
In two different iron ore processing plants, it was demonstrated that when magnetite concentrate was...
A flocculator-imaging system was developed to characterize the dynamics of particle size distributio...
It is well known that reverse flotation performance of iron oxides is affected by water quality. Sin...
For efficient water clarification, flocculation is usually induced using positively charged polyelec...
The flocculation behavior of iron ore fines using Magnafloc polymers as flocculants was studied alon...
© 2017 Taylor & Francis. We show how pelletizing additives affect the zeta potential, sedimentatio...
In water treatment processes, the optimal dosage of coagulant is highly dependent of suspended parti...
Separation of ultrafine hematite from quartz and kaolinite gangue minerals using selective flocculat...
Iron oxide nanoparticles are the most used magnetic nanoparticles in biomedical and biotechnological...
In this study, the importance of charge interactions during flocculation of Fe3+ in the presence of ...
Based on the regulating behavior of Fe3+, flocculation and sedimentation tests of iron tailings slur...
Sorption of copper and cadmium ions from aqueous solutions by ferric oxide particles was studied usi...
Our aim was to systematically investigate the influence of anions (HPO4 2−), cations (Ca2+, Mg2+) an...
Fine-grained hematite ore can be concentrated by the process of selective flocculation and dispersio...
Abstract— The cations are needed as stimulants for effective flocculation by the cation-dependent bi...
In two different iron ore processing plants, it was demonstrated that when magnetite concentrate was...
A flocculator-imaging system was developed to characterize the dynamics of particle size distributio...
It is well known that reverse flotation performance of iron oxides is affected by water quality. Sin...
For efficient water clarification, flocculation is usually induced using positively charged polyelec...
The flocculation behavior of iron ore fines using Magnafloc polymers as flocculants was studied alon...
© 2017 Taylor & Francis. We show how pelletizing additives affect the zeta potential, sedimentatio...
In water treatment processes, the optimal dosage of coagulant is highly dependent of suspended parti...
Separation of ultrafine hematite from quartz and kaolinite gangue minerals using selective flocculat...
Iron oxide nanoparticles are the most used magnetic nanoparticles in biomedical and biotechnological...