Method for preparing lanthanum cerium oxalate from rare earth polishing powder waste residue
A technology of rare earth polishing powder and lanthanum oxalate, which is applied in the preparation of carboxylate, organic chemistry, etc., can solve the problems of large environmental pollution, high recycling cost, complicated smelting process, etc., and achieve the effect of simple recycling process and environmental friendliness
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0024] (1) Take 1000 kg of rare earth polishing powder waste slag, after physical separation of obvious impurities, crush the particles to a particle size below 10mm to obtain the crushed waste slag;
[0025] (2) Put the crushed waste residue into a 2500-liter glass-lined reactor, add 900 kg of 98% concentrated sulfuric acid, heat the reactor with heat-conducting oil, immerse and react at 150°C for 8 hours, and then place it in the reactor When naturally cooling to below 100°C, the material is discharged to obtain lanthanum cerium sulfate extract;
[0026] (3) Dilute the lanthanum cerium sulfate extract with water to a total of 3000 liters, stir evenly, then use a filter press to separate the lanthanum cerium sulfate extract from the solid residue and wash the solid residue 6 times with deionized water;
[0027] (4) adding an aqueous oxalic acid solution with a mass concentration of 20% to the separated lanthanum cerium sulfate leaching solution to obtain a white lanthanum cer...
Embodiment 2
[0031] (1) Take 1000 kg of rare earth polishing powder waste slag, after physical separation of obvious impurities, crush the particles to a particle size below 10mm to obtain the crushed waste slag;
[0032] (2) Put the crushed waste residue into a 2,500-liter glass-lined reactor, add 1,000 kg of 98% concentrated sulfuric acid, heat the reactor with heat-conducting oil, immerse and react at 180°C for 5 hours, and then place it in the reactor When naturally cooling to below 100°C, the material is discharged to obtain lanthanum cerium sulfate extract;
[0033] (3) Dilute the lanthanum cerium sulfate extract with water to a total amount of 3000 liters, stir evenly, then use a filter press to separate the lanthanum cerium sulfate extract from the solid residue and wash the solid residue 8 times with deionized water;
[0034] (4) Slowly and evenly add 25% oxalic acid aqueous solution to the separated lanthanum cerium sulfate leaching solution to obtain white lanthanum cerium oxala...
Embodiment 3
[0038] (1) Take 1000 kg of rare earth polishing powder waste slag, after physical separation of obvious impurities, crush the particles to a particle size below 10mm to obtain the crushed waste slag;
[0039] (2) Put the crushed waste residue into a 2500-liter glass-lined reactor, add 800 kg of 98% concentrated sulfuric acid, heat the reactor with heat-conducting oil, immerse and react at 120°C for 10 hours, and then place it in the reactor When naturally cooling to below 100°C, the material is discharged to obtain lanthanum cerium sulfate extract;
[0040] (3) Dilute the lanthanum cerium sulfate extract with water to a total of 3000 liters, stir evenly, then use a filter press to separate the lanthanum cerium sulfate extract from the solid residue and wash the solid residue 5 times with deionized water;
[0041](4) Slowly and evenly add oxalic acid powder into the separated lanthanum cerium sulfate leaching solution to obtain white lanthanum cerium oxalate precipitate until n...
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