Effect of iron oxide nanocluster on enhanced removal of molybdate from surface water and pilot scale test
-
Add time:09/27/2019 Source:sciencedirect.com
A novel combination of magnetic adsorptive and coagulative strategy which was applied to remove molybdenum (Mo) ions from surface water was investigated in this study. The ferromagnetic nanoclusters and ferromagnetic nanoclusters-ferric flocs composite coagulant were characterized in terms of typical properties, structure and morphological analysis (TEM, XRD, M–H hysteresis curves, particle size distribution). Different removal agents of Mo was investigated that the removal rate of Mo was ferromagnetic nanoclusters-FeCl3 > FeCl3 > AlCl3 > TiCl4. Jar tests were employed to evaluate the removal performances. The coagulation performances of ferromagnetic nanoclusters-ferric flocs were compared under different pH conditions and dosages. Various factors influencing the removal of Mo(VI), e.g. pH, the dose of ferromagnetic nanoparticle, FeCl3, were conducted using a 33 full factorial design approach. The results show that the newly addition of ferromagnetic nanoparticles obviously had a trend to form cluster, especially magnetic force acted as a key role that may promote the formation of ferromagnetic nanoclusters. The better removal performance of Mo could be attributed to the co-effect of ferromagnetic nanoclusters and ferric flocs. Meanwhile, in order to satisfy the national drinking water criterion, the reinforce effect of ferromagnetic nanoclusters on reducing the concentration of ferric (Fe) ions in effluent makes sure that the content of ferric ions under 0.3 mg/L. The experimental results indicated that mechanism of the molybdate removal was a physical surface adsorption which might combine with chemical action.
We also recommend Trading Suppliers and Manufacturers of Iron(II) molybdate(VI) (cas 13718-70-2). Pls Click Website Link as below: cas 13718-70-2 suppliers
Prev:Cooperation between redox couples at the surface of molybdates based catalysts used for the selective oxidation of propene
Next:Short communicationUnusual formations of superoxo heptaoxomolybdates from peroxo molybdates) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Short communicationUnusual formations of superoxo heptaoxomolybdates from peroxo molybdates10/01/2019
- Cooperation between redox couples at the surface of molybdates based catalysts used for the selective oxidation of propene09/26/2019
- Three-dimensional transfer of Cr(VI) co-precipitated with ferrihydrite containing silicate and its redistribution and retention during aging09/25/2019
- Removing molybdate from water using a hybridized zero-valent iron/magnetite/Fe(II) treatment system09/24/2019
- Transport and retention of Molybdenum(VI) on iron oxide-coated sand: A modified multi reaction model09/10/2019
- Research paperSimultaneous molybdate (Mo(VI)) recovery and hazardous ions immobilization via nanoscale zerovalent iron09/09/2019
- Impact of ageing on the fate of molybdate-zerovalent iron nanohybrid and its subsequent effect on cyanobacteria (Microcystis aeruginosa) growth in aqueous media09/08/2019
- Original articlePreparation of iron molybdate catalysts for methanol to formaldehyde oxidation based on ammonium molybdoferrate(II) precursor09/07/2019
-
Health and Chemical more >


