Utilization of nanoscale zero-valent iron for source remediation—A case study
Author:
Publisher
Wiley
Subject
Pollution,Waste Management and Disposal,Environmental Engineering
Reference18 articles.
1. Pathways and Kinetics of Chlorinated Ethylene and Chlorinated Acetylene Reaction with Fe(0) Particles
2. & (1999). An in-situ permeable reactive barrier for the treatment of hexavalent chromium and trichloroethylene in ground water: Vol. 3, Multicomponent reactive transport modeling. EPA/6000/R-99/095c.
3. Kinetics of DCE and VC Mineralization under Methanogenic and Fe(III)-Reducing Conditions
4. Kinetics of the Transformation of Trichloroethylene and Tetrachloroethylene by Iron Sulfide
5. Kinetics of the Transformation of Halogenated Aliphatic Compounds by Iron Sulfide
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1. Performance of field demonstration nanoscale zero-valent iron in groundwater remediation: A review;Science of The Total Environment;2024-02
2. Isotopic evidence (δ13C, δ37Cl, δ2H) for distinct transformation mechanisms of chloroform: Catalyzed H2-water system vs. zero-valent iron (ZVI);Journal of Environmental Chemical Engineering;2023-06
3. Decoupling Fe0 Application and Bioaugmentation in Space and Time Enables Microbial Reductive Dechlorination of Trichloroethene to Ethene: Evidence from Soil Columns;Environmental Science & Technology;2023-03-03
4. Remediation of organic contaminated soil by Fe-based nanoparticles and surfactants: a review;Environmental Technology Reviews;2023-02-20
5. The era of low-permeability sites remediation and corresponding technologies: A review;Chemosphere;2023-02
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