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Metal Ion Extraction with Bipyridine Derivatives as Chelating Ligands in Supercritical Carbon Dioxide
10.1002/clen.200900274.abs
Three fluorinated bipyridine ligands have been designed and synthesized as chelating agents for the extraction of metal ions in supercritical CO2(sc‐CO2). The ligand solubilities in sc‐CO2 were investigated at different temperatures and pressures, and the measured data have been correlated using a semiempirical model. The calculated results showed satisfactory agreement with the experimental data. Based on these data, metal ion extraction with the three compounds as chelating agents in sc‐CO2 was performed from spiked filter paper, whereby ligand1 showed the highest extraction efficiency, especially for Ni2+and Cu2+. The extraction constants, Kex, of the three chelating ligands were seen to increase with increasing extraction efficiency for the same metal ion in the same extraction system.
Metal Ion Extraction with Bipyridine Derivatives as Chelating Ligands in Supercritical Carbon Dioxide
10.1002/clen.200900274.abs
Three fluorinated bipyridine ligands have been designed and synthesized as chelating agents for the extraction of metal ions in supercritical CO2(sc‐CO2). The ligand solubilities in sc‐CO2 were investigated at different temperatures and pressures, and the measured data have been correlated using a semiempirical model. The calculated results showed satisfactory agreement with the experimental data. Based on these data, metal ion extraction with the three compounds as chelating agents in sc‐CO2 was performed from spiked filter paper, whereby ligand1 showed the highest extraction efficiency, especially for Ni2+and Cu2+. The extraction constants, Kex, of the three chelating ligands were seen to increase with increasing extraction efficiency for the same metal ion in the same extraction system.
Metal Ion Extraction with Bipyridine Derivatives as Chelating Ligands in Supercritical Carbon Dioxide
Yang, Hai‐Jian (author) / Kim, Hakwon (author) / Guo, Cun‐Yue (author)
CLEAN – Soil, Air, Water ; 38 ; 159-166
2010-02-01
8 pages
Article (Journal)
Electronic Resource
English
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