Reductive removal of selenate by zero-valent iron: The roles of aqueous Fe(2+) and corrosion products, and selenate removal mechanisms.
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Summary
Findings provided a new approach to overcome ZVI surface passivation for long-term application and showed that selenate was reduced step by step, with elemental selenium and adsorbed selenite as the dominant reductive products.
- Type
- article
- Published
- 2014-12-15
- Cited by
- 139
- References
- 30
- Access
- Open access
- OpenAlex
- https://openalex.org/W25269108
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20893749
Keywords
Computer security, Security testing, Security through obscurity, Security service, Security information and event management
References
- Standard methods for the examination of water and wastewater : supplement to the sixteenth edition
- The essential toxin: the changing perception of selenium in environmental sciences.
- Sorption of selenium(IV) and selenium(VI) onto magnetite
- Removing molybdate from water using a hybridized zero-valent iron/magnetite/Fe(II) treatment system
- Immobilization of selenate by iron in aqueous solution under anoxic conditions and the influence of uranyl
- Selenium removal from water and its recovery using iron (Fe3+) oxide/hydroxide-based nanoparticles sol (NanoFe) as an adsorbent
- Reduction and adsorption mechanisms of selenate by zero-valent iron and related iron corrosion
- Understanding the positive effects of low pH and limited aeration on selenate removal from water by elemental iron
- The fate of selenium in the Imperial and Brawley constructed wetlands in the Imperial Valley (California).
- Environmental selenium research: from microscopic processes to global understanding.
- An in situ study of the role of surface films on granular iron in the permeable iron wall technology.
- Surface chemical reactivity in selected zero-valent iron samples used in groundwater remediation.
- The use of zero-valent iron for groundwater remediation and wastewater treatment: a review.
- Effects of ferrous ions on the reductive dechlorination of trichloroethylene by zero-valent iron.
- Kinetics of Fe(II)-catalyzed transformation of 6-line ferrihydrite under anaerobic flow conditions.
- pH-dependence of selenate removal from liquid phase by reductive Fe(II)-Fe(III) hydroxysulfate compound, green rust.
- Reduction of Se(VI) to Se(-II) by zerovalent iron nanoparticle suspensions
- Kinetics and mechanisms of pH-dependent selenite removal by zero valent iron.
- Promotion effect of Fe2+ and Fe3O4 on nitrate reduction using zero-valent iron
- An overview of permeable reactive barriers for in situ sustainable groundwater remediation.
Cited by
- Selenate removal by zero-valent iron in oxic condition: the role of Fe(II) and selenate removal mechanism
- Removal of selenite by zero-valent iron combined with ultrasound: Se(IV) concentration changes, Se(VI) generation, and reaction mechanism.
- Efficient selenate removal by zero-valent iron in the presence of weak magnetic field
- The limitations of applying zero-valent iron technology in contaminants sequestration and the corresponding countermeasures: the development in zero-valent iron technology in the last two decades (1994-2014).
- Synergetic effect of a pillared bentonite support on SE(VI) removal by nanoscale zero valent iron
- Removal of hexavalent chromium from wastewater by acid-washed zero-valent aluminum
- A facile method for determining the Fe(0) content and reactivity of zero valent iron
- Rapid removal of selenate in a zero-valent iron/Fe3O4/Fe2+ synergetic system
- Heavy metal removal using nanoscale zero-valent iron (nZVI): Theory and application.
- Fractionation of Selenium during Selenate Reduction by Granular Zerovalent Iron.
- Enhanced immobilization of ReO4− by nanoscale zerovalent iron supported on layered double hydroxide via an advanced XAFS approach: Implications for TcO4− sequestration
- New insights into the primary roles of diatomite in the enhanced sequestration of UO22+ by zerovalent iron nanoparticles: An advanced approach utilizing XPS and EXAFS
- The influences of iron characteristics, operating conditions and solution chemistry on contaminants removal by zero-valent iron: A review.
- Genesis of pure Se(0) nano- and micro-structures in wastewater with nanoscale zero-valent iron (nZVI)
- Temporospatial evolution and removal mechanisms of As(V) and Se(VI) in ZVI column with H2O2 as corrosion accelerator.
- X-ray absorption fine structure study of enhanced sequestration of U(VI) and Se(IV) by montmorillonite decorated with zero-valent iron nanoparticles
- Design of a selective regenerable cellulose microcolumn for selenium efficient recovery and economic determination
- Solution and surface chemistry of the Se(IV)-Fe(0) reactions: Effect of initial solution pH.
- Heterogeneous selenite reduction by zero valent iron steel wool.
- Enhanced Cr(VI) removal from groundwater by Fe0-H2O system with bio-amended iron corrosion.