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  4. The effects of salinity and temperature on phase transformation of copper-laden sludge
 
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The effects of salinity and temperature on phase transformation of copper-laden sludge

Journal
Journal of Hazardous Materials
Journal Volume
244-245
Pages
501-506
Date Issued
2013
Author(s)
Hsieh, C.-H.
Shih, K.
Hu, C.-Y.
Lo, S.-L.
Li, N.-H.
Cheng, Y.-T.
SHANG-LIEN LO  
DOI
10.1016/j.jhazmat.2012.10.066
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/463336
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84872606051&doi=10.1016%2fj.jhazmat.2012.10.066&partnerID=40&md5=e0f32be59fd055c27ac872b4a79f7950
Abstract
To stabilize the copper and aluminum ions in simulated sludge, a series of sintering processes were conducted to transform Cu/Al precipitation into spinel structure, CuAl2O4. The results indicated that the large amount of salt content in the simulated sludge would hinder the formation of crystalline CuAl2O4 generated from the incorporation of CuO and Al2O3, even after the sintering process at 1200°C. Opposite to the amorphous CuAl2O4, the crystalline CuAl2O4 can be formed in the sintering process at 700-1100°C for 3h with the desalinating procedure. According to the theory of free energy, the experimental data and references, the best formation temperature of CuAl2O4 was determined at 900-1000°C. As the temperature rose to 1200°C, CuAlO2 was formed with the dissociation of CuAl2O4. The XPS analysis also showed that the binding energy of copper species in the simulated sludge was switched from 933.8eV for Cu(II) to 932.8eV for Cu(I) with the variation of temperature. In this system, the leaching concentration of copper and aluminum ions from sintered simulated sludge was decreased with ascending temperature and reached the lowest level at 1000°C. Furthermore, the descending tendency coincided with the formation tendency of spinel structure and the diminishing of copper oxide. © 2012 Elsevier B.V.
Subjects
Copper; CuAl2O4; Sludge; Spinel; Stabilization; Transformation
SDGs

[SDGs]SDG6

[SDGs]SDG12

Other Subjects
Aluminum ions; CuAl2O4; Formation temperature; Leaching concentrations; Salt content; Sintering process; Sludge; Spinel; Spinel structure; Transformation; XPS analysis; Aluminum; Binding energy; Copper; Crystalline materials; Desalination; Leaching; Stabilization; Sintering; aluminum; copper ion; copper oxide; sodium chloride; aluminum; cation; copper; crystallinity; desalination; heating; phase transition; precipitation (chemistry); salinity; sludge; spinel; temperature effect; temperature profile; transformation; article; biotransformation; chemical binding; chemical reaction; chemical structure; crystal structure; desalination; leaching; salinity; sludge stabilization; solid waste; temperature dependence; Aluminum; Copper; Hot Temperature; Salinity; Sewage; Temperature; Water Pollutants, Chemical
Type
journal article

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