Impact of ageing on the fate of molybdate-zerovalent iron nanohybrid and its subsequent effect on cyanobacteria (Microcystis aeruginosa) growth in aqueous media
-
Add time:09/08/2019 Source:sciencedirect.com
Nanoscale zerovalent iron (nZVI) has been proposed to remediate heavy metal ions in the subsurface. However, the fate of metal-nZVI hybrid has not been fully investigated. In this study, we investigated (1) the long-term removal performance of nZVI for molybdate (Mo(VI)); (2) the relationship between the ageing of Mo-nZVI hybrid in specific solution chemistries and the remobilization of Mo(VI) from the hybrid; and (3) the effects of Mo-nZVI hybrid on cyanobacteria (Microcystis aeruginosa). Results showed that although common ions have limited influence on the removal ratio of Mo(VI) by nZVI, they do impact the structure evolution and transformation of the Mo-nZVI nanohybrid formed thereafter. Ageing time was crucial for the chemical stabilization of Mo-nZVI hybrid, but common groundwater ions retarded the stabilizing process, which may lead to a significant remobilization of Mo(VI) from the hybrid after exposure to water bodies. While low levels of Mo(VI) ions could stimulate the growth of M. aeruginosa, aged Mo-nZVI hybrid inhibited the growth of M. aeruginosa, except when ageing occurred in the presence of HPO42−/CO32− (which also retarded hybrid stabilization). This study shows that nZVI can immobilize Mo(VI) ions in groundwater, and the derived metal-nZVI hybrid can effectively suppress the potential growth of M. aeruginosa in river water.
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:Original articlePreparation of iron molybdate catalysts for methanol to formaldehyde oxidation based on ammonium molybdoferrate(II) precursor
Next:Research paperSimultaneous molybdate (Mo(VI)) recovery and hazardous ions immobilization via nanoscale zerovalent iron) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Short communicationUnusual formations of superoxo heptaoxomolybdates from peroxo molybdates10/01/2019
- Effect of iron oxide nanocluster on enhanced removal of molybdate from surface water and pilot scale test09/27/2019
- 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
- Original articlePreparation of iron molybdate catalysts for methanol to formaldehyde oxidation based on ammonium molybdoferrate(II) precursor09/07/2019
-
Health and Chemical more >


