Nanoscale Zerovalent Iron (NZVI) for Environmental Decontamination: A Brief History of 20 Years of Research and Field-Scale Application

Author:

Phenrat Tanapon,Lowry Gregory V.,Babakhani Peyman

Publisher

Springer International Publishing

Reference93 articles.

1. Babakhani, P., Fagerlund, F., Shamsai, A., Lowry, G. V., & Phenrat, T. (2015). Modified MODFLOW-based model for simulating the agglomeration and transport of polymer-modified Fe nanoparticles in saturated porous media. Environmental Science and Pollution Research International, 25(8), 7180–7199.

2. Bard, A. J., Parsons, R., & Jordan, J. (1985). Standard potentials in aqueous solution. New York: CRC Press.

3. Bardos, P., Bone, B., Daly, P., Elliott, D., Jones, S., Lowry, G. V., & Merly, C. (2015). A risk/benefit appraisal for the application of nano-scale zero valent iron (nZVI) for the remediation of contaminated sites. Taking nanotechnological remediation processes from lab scale to end user applications for the restoration of a clean environment. European Union Seventh Framework Programme (FP7/2007-2013), Project Nr.: 309517, p. 76.

4. Bennett, P., He, F., Zhao, D., Aiken, B., & Feldman, L. (2010). In situ testing of metallic iron nanoparticle mobility and reactivity in a shallow granular aquifer. Journal of Contaminant Hydrology, 116, 35–46.

5. Bitsch, R., Matz, P., Kvapil, P., & Klaas, N. (2017). NanoRem Pilot Site – Solvay, Switzerland: Nanoscale zero-valent iron remediation of chlorinated solvents. CL:AIRE’s NanoRem bulletins. CL:AIRE, UK, pp. 1–6.

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