Environmental Science & Technology · 2011 · 204 citations · 16 references
Investigations about how to recycle the deactivated nanomaterials are well-needed. This work was designed to explore the recycling strategy of Mg(OH)(2) nanoadsorbent during treating low concentration of Cr(VI) solution as an example. It was demonstrated that a reversible route between Cr-adsorbed nano-Mg(OH)(2) and Cr-desorbed bulk-MgCO(3) · 3H(2)O can be established by using CO(2) as a phase transformation medium. In each adsorption-desorption cycle, Cr(VI) solution with initial concentration of 10 mg · L(-1) could be enriched over 40 times. An aggregation-induced rapid phase transformation mechanism from nano-Mg(OH)(2) to bulk-MgCO(3) · 3H(2)O was discovered, which was one of the critical factors to ensure the disposing efficiency of this environmental-friendly Cr(VI) disposal system. A pilot-scale experiment was conducted with this strategy to deal with 50 L Cr(VI)-containing simulated industrial wastewater. The enrichment of Cr(VI) and the recycle of nano-Mg(OH)(2) can be successfully achieved simultaneously.
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Removal of Arsenic(III) from Groundwater by Nanoscale Zero-Valent Iron
Sushil R. Kanel, Bruce A. Manning, Laurent Charlet et al. · Environmental Science & Technology · 2005 · 1.1K citations
Cheol Kyun Joo, Younghun Kim, Jongheop Yi · Journal of Hazardous Materials · 2003 · 480 citations
Advanced Oxidation Process, Chemical Engineering, Electronic Process Wastewater +11