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Tunable formation of copper metal, oxide, chloride and hydroxyl chloride nanoparticles from aqueous copper solutions using nanoscale zerovalent iron particles

Richard Crane et al · SAGE Publishing · 2019

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The influence of different parameters (solid–liquid ratio, initial pH, initial Cu concentration and anion type) on the cementation of aqueous copper (Cu) with nanoscale zerovalent iron (nZVI) has been studied. The work has been established to study both the influence such parameters have on the kinetics and efficacy of the cementation process but also the physicochemical composition of resultant Cu-bearing products. The nZVI exhibited high Cu removal capacity (maximum removal 905.2 mg/g) due to its high surface area. X-ray diffraction determined the most common Cu-bearing precipitates were Cu 2 O, CuCl 2 and Cu 2 (OH) 3 Cl for solutions containing Cl − counterions (CuCl 2 salt precursor), while Cu 0 and Cu 2 O were the most common phases for those containing SO 4 2 − counterions (CuSO 4 salt precursor). Transmission electron microscopy determined such precipitates were discrete nanoparticles of relatively high purity Cu (e.g. >80 wt% Cu or ≥99.9 wt% Cu and O). Overall the results demonstrate nZVI as effective for the one-pot transformation of aqueous Cu into a range of different high purity Cu-bearing nanoparticles. The methodology developed herein is therefore likely to have important application in the recovery of Cu from wastewater and process solutions where the direct upcycling to high-value Cu-bearing nanoparticles is an advantageous form in which to recover Cu.

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APA 7

al, R. C. E. (2019). Tunable formation of copper metal, oxide, chloride and hydroxyl chloride nanoparticles from aqueous copper solutions using nanoscale zerovalent iron particles. https://doi.org/10.1177/1847980419886173

MLA

al, Richard Crane et. "Tunable formation of copper metal, oxide, chloride and hydroxyl chloride nanoparticles from aqueous copper solutions using nanoscale zerovalent iron particles." 2019. https://doi.org/10.1177/1847980419886173.

Chicago

al, Richard Crane et. 2019. "Tunable formation of copper metal, oxide, chloride and hydroxyl chloride nanoparticles from aqueous copper solutions using nanoscale zerovalent iron particles.". https://doi.org/10.1177/1847980419886173.

Harvard

al, R. C. E. 2019, Tunable formation of copper metal, oxide, chloride and hydroxyl chloride nanoparticles from aqueous copper solutions using nanoscale zerovalent iron particles, SAGE Publishing, available at: https://doi.org/10.1177/1847980419886173 [Accessed 22 Jun. 2026].

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Título
Tunable formation of copper metal, oxide, chloride and hydroxyl chloride nanoparticles from aqueous copper solutions using nanoscale zerovalent iron particles
Autor / colaboradores
Richard Crane et al
Editorial
SAGE Publishing
Año de publicación
2019
ISSN
1847-9804
ISSN
1847-9804
Idioma
eng
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