Wet-process open treatment method of arsenic in copper ashes
A processing method and technology for copper soot, applied in the direction of improving process efficiency, etc., can solve problems such as difficulty in opening a circuit, air pollution, etc., and achieve the effects of simple process, low production cost, and high metal recovery rate.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0021] Copper soot chemical weight composition: lead 50%, arsenic 4.3%, nickel 0.03%, copper 5.6%, zinc 6.2%, iron 0.86%, antimony 3%, bismuth 2.18%, sulfur and oxygen, carbon 30%.
[0022] Add sodium hypochlorite and sodium hydroxide solution to the copper soot, the concentration of sodium hypochlorite solution is 8%, sodium hydroxide is 2%, the liquid-solid ratio is 15:1, the reaction is stirred for 1.5 hours, the reaction temperature is 50°C, and the dearsenized slag and dearsenized residue are obtained by filtration. After liquid, the liquid after arsenic removal is used in the next step.
[0023] The slag after arsenic removal is sent to the current soot plant to recover valuable metals such as copper, lead, zinc, and bismuth. Chemical composition of slag after arsenic removal: lead 56.99%, arsenic 0.18%, nickel 0.06%, copper 6%, zinc 6.85%, iron 0.96%, antimony 3.40%, bismuth 2.32%, sulfur 0.5%, oxygen, chlorine, sodium 20% .
[0024] The arsenic solution is used to pr...
Embodiment 2
[0026] Copper soot chemical composition: lead 10%, arsenic 5%, nickel 0.01%, copper 20%, zinc 2%, iron 1.5%, antimony 5%, bismuth 15%, sulfur and oxygen, carbon 40%.
[0027] Add sodium hypochlorite and sodium hydroxide solution to the copper soot, the concentration of sodium hypochlorite solution is 12%, sodium hydroxide is 2%, the liquid-solid ratio is 10:1, the reaction is stirred for 1 hour, and the reaction temperature is 80°C. After the arsenic removal, the solution will be used in the next step.
[0028] The slag after arsenic removal is sent to the current soot plant to recover valuable metals such as copper, lead, zinc, and bismuth. Chemical composition of slag after arsenic removal: lead 10.99%, arsenic 0.19%, nickel 0.02%, copper 23%, zinc 2.15%, iron 1.7%, antimony 5.6%, bismuth 17%, sulfur 0.9%, oxygen, chlorine, sodium 39% .
[0029] The arsenic solution is used to precipitate arsenic by ferrite method after arsenic removal, the arsenic slag is buried, and the ...
Embodiment 3
[0031] Chemical composition of copper soot: lead 60%, arsenic 2, nickel 0.1%, copper 2, zinc 7%, iron 0.5%, antimony 0.1%, bismuth 1%, sulfur and oxygen carbon 36%.
[0032] Add sodium hypochlorite and sodium hydroxide solution to the copper soot, the concentration of sodium hypochlorite solution is 4%, sodium hydroxide is 10%, the liquid-solid ratio is 20:1, the reaction is stirred for 2 hours, the reaction temperature is 60°C, and the dearsenized slag and dearsenic are obtained by filtration After liquid, the liquid after arsenic removal is used in the next step.
[0033] The slag after arsenic removal is sent to the current soot plant to recover valuable metals such as copper, lead, zinc, and bismuth. Chemical composition of slag after arsenic removal: lead 67%, arsenic 0.1%, nickel 0.06%, copper 2.3%, zinc 7.85%, iron 0.6%, antimony 1.02%, bismuth 1.12%, sulfur 0.3%, oxygen, chlorine, sodium 30% .
[0034] The arsenic solution is used to precipitate arsenic by ferrite me...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com