Understanding the Properties of Oxime Extractants for Metal Processing
In the intricate world of chemical processing, understanding the specific properties of the reagents used is fundamental to achieving optimal results. For the selective extraction of non-ferrous metals like copper and nickel, oxime-based compounds have established themselves as industry standards. This article focuses on Ethanone, 1-(2-hydroxy-5-nonylphenyl)-, oxime (CAS 59344-62-6), a key player in solvent extraction, examining its characteristic properties and highlighting why it's a preferred choice for manufacturers seeking to buy advanced metal processing chemicals. We aim to provide insights for procurement managers and R&D scientists to make informed decisions when sourcing from chemical suppliers.
Ethanone, 1-(2-hydroxy-5-nonylphenyl)-, oxime is characterized by its physical appearance as a fluid amber liquid, a form that facilitates its integration into standard solvent extraction circuits. The chemical boasts a high assay of 99% minimum purity, ensuring consistent and predictable performance in demanding industrial environments. For those looking to buy this compound, knowing its assay is critical for process efficiency. Its molecular structure, featuring both a phenolic hydroxyl group and an oxime functional group, is precisely what enables its high selectivity for metal ions, particularly copper, under acidic conditions.
Delving deeper into its physicochemical properties, the density of Ethanone, 1-(2-hydroxy-5-nonylphenyl)-, oxime is typically around 0.90-0.91 g/cm³ at 25°C, and its flash point is generally above 70°C, indicating reasonable safety in handling. Crucially for metal extraction, its extraction kinetics and phase separation properties are finely tuned. The reagent exhibits efficient extraction kinetics, meaning it rapidly transfers target metal ions from the aqueous phase to the organic phase. Following extraction, the organic and aqueous phases must separate cleanly and quickly to ensure process throughput. The specified phase separation times, typically under 60 seconds for extraction and 80 seconds for stripping, are testament to its excellent physical properties, making it a sought-after product from chemical manufacturers.
The primary application for Ethanone, 1-(2-hydroxy-5-nonylphenyl)-, oxime lies in the solvent extraction of copper. Its high extraction capacity and selectivity for copper over common impurities like iron are well-documented. This makes it an indispensable reagent for producing high-purity copper cathodes. While also effective for nickel recovery, its dominance in copper extraction is notable. Procurement managers seeking to buy these vital reagents will find that reliable suppliers, especially those manufacturing in China, can offer this compound with consistent quality and competitive pricing, ensuring a stable supply chain for their critical metal processing needs.
In summary, the unique combination of physical and chemical properties of Ethanone, 1-(2-hydroxy-5-nonylphenyl)-, oxime makes it a superior choice for advanced metal extraction processes. Its high purity, excellent selectivity, and favorable operational characteristics contribute significantly to the efficiency and profitability of copper and nickel recovery operations. As a leading manufacturer and supplier, we are dedicated to providing this essential chemical. We invite you to contact us to discuss your requirements and obtain a quote for purchasing this high-performance metal extraction reagent.
Perspectives & Insights
Quantum Pioneer 24
“As a leading manufacturer and supplier, we are dedicated to providing this essential chemical.”
Bio Explorer X
“We invite you to contact us to discuss your requirements and obtain a quote for purchasing this high-performance metal extraction reagent.”
Nano Catalyst AI
“In the intricate world of chemical processing, understanding the specific properties of the reagents used is fundamental to achieving optimal results.”