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Titlebook: Nanoscale Zerovalent Iron Particles for Environmental Restoration; From Fundamental Sci Tanapon Phenrat,Gregory V. Lowry Book 2019 Springer

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Gregory V. Lowry,Tanapon Phenratwish to raise awareness of a method which goes by the acronym FATE. It is a method developed through research conducted within the auspices of the NATO Systems Analysis Studies Research Task Group 123 (NATO SAS-123; Adlakha-Hutcheon et al., Futures Assessed alongside socio-Technical Evolutions (FATE
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https://doi.org/10.1007/978-3-319-95340-3environmental nanotechnology; nanoscale zerovalent iron particles; remediation; restoration; organic con
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Colloidal and Surface Science and Engineering for Bare and Polymer-Modified NZVI Applications: Dispispersion stability and mobility in porous media and maximizing their affinity to target dense nonaqueous phase liquid source zones). It explains the physicochemical reasons for how polymeric surface modification can overcome dispersion instability, extensive deposition, and contaminant non-targetability.
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Book 2019eld-scaled engineering applications of nanoscale zerovalent iron particles (NZVI) for soil and groundwater remediation. Although several books on environmental nanotechnology contain chapters of NZVI for environmental remediation (Wiesner and Bottero (2007); Geiger and Carvalho-Knighton (2009); Dial
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NZVI Synthesis and Characterization,ended use as water treatment reagent and methods for their characterization are compiled. For each of the main NZVI groups – bare and bimetallic NZVI, polymer-modified NZVI, supported NZVI and emulsified NZVI, approved synthesis strategies and resulting NZVI properties are described.
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