Abstract
Sludges generated from electroplating wastewaters contain high concentrations of metals. Studies have confirmed that the concentrations of several metals in the sludge exceed that of those found in natural ores. A very good example is in the case of Copper. The natural Copper ore contains less than 1% of Copper, whereas Copper precipitate sludges from, the electroplating industry may have an average of 5-10% of Copper. Thus, they are one of the largest sources of untapped metal-bearing secondary materials amenable to metals recovery. In Malaysia, most of these metal bearing sludges are disposed in specially engineering landfills, as many of them do not have the proper incentives and recovery technology. Very less metal recovery is being carried out, and there seems to be a huge waste in these valuable metal resources. With regards to that, an experimental study was carried out to develop a method of Copper recovery from metal hydroxide sludges. Sludge samples containing high concentrations of Copper were obtained from a local electroplating plant for the study. A procedure based upon mineral acid leaching or solubilisation was carried out. Two different types of acids, Hydrochloric acid (HCl) and Sulphuric acid (H2SO4) were used to compare the extractability of Copper. Experiments were conducted at various acid concentrations and temperatures to determine the maximum amount of Copper recoverable. From the results obtained, maximum Copper (95%) was solubilised using H 2SO4 of 10 M at temperature 110°C, for a leaching period of 4 hours. These Copper concentrated solutions were then heated and crystallised to form CuSO4 crystals. These crystals could be reutilised or further treated to produce other useful substances for the metallurgical industry. This study introduces a sustainable method of utilising an electroplating sludge containing valuable metals.
| Original language | English |
|---|---|
| Title of host publication | CHISA 2006 - 17th International Congress of Chemical and Process Engineering |
| State | Published - 2006 |
Publication series
| Name | CHISA 2006 - 17th International Congress of Chemical and Process Engineering |
|---|
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 6 Clean Water and Sanitation
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SDG 9 Industry, Innovation, and Infrastructure
ASJC Scopus subject areas
- General Chemical Engineering
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