Method for separating yttrium oxide from middle-yttrium europium-rich rare earth ore by grouping
A technology of rare earth ore and europium-rich type, which is applied in the fields of rare earth metal compounds, chemical instruments and methods, inorganic chemistry, etc., and can solve problems such as large water solubility, affecting process stability, and complex composition
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0048] Step 1: Use 1.0mol / L P507-20% isooctanol mixed system dysprosium and holmium grouping for medium yttrium and europium-rich rare earth ore liquid, the degree of saponification is 36%, the organic phase is back-extracted with 5mol / L hydrochloric acid, and the raffinate water phase It is light and medium rare earth enrichment (La~Dy component), and the organic phase is yttrium-rich material 1 (Ho~Lu Y component), Y 2 o 3 The grade is about 83%. 1.5mol / LP507 system was used to separate single rare earth from light and medium rare earth enrichment, the degree of saponification was 36%, and the organic phase was back-extracted with 3.5mol / L hydrochloric acid.
[0049] Step 2: Yttrium-rich material 1 uses 1.2mol / L P507-20% isooctyl alcohol mixed system erbium and thulium grouping, and the raffinate water phase is yttrium-rich material 2 (Ho Er Y component), Y 2 o 3 The grade was increased to 88%. The organic phase is thulium, ytterbium and lutetium concentrates, and the st...
Embodiment 2
[0052] Step 1: Use 0.5mol / L P507-0.5mol / L Cyanex272 mixed system Dysprosium-Holmium grouping for medium-yttrium-europium-rich rare earth ore liquid, the degree of saponification is 36%, the organic phase is back-extracted with 3.5mol / L hydrochloric acid, and the raffinate The phase is light and medium rare earth enrichment (La~Dy component), the organic phase is yttrium-rich material 1 (Ho~Lu Y component), Y 2 o 3 The grade is about 83%. 1.0mol / L P507 system was used to separate single rare earth from the light and medium rare earth enrichment, the degree of saponification was 36%, and the organic phase was back-extracted with 3.0mol / L hydrochloric acid.
[0053] Step 2: Yttrium-rich material 1 is divided into 0.5mol / L P507-0.5mol / L Cyanex272 mixed system erbium and thulium, and the raffinate water phase is yttrium-rich material 2 (Ho Er Y component), Y 2 o 3 The grade was increased to 88%. The organic phase is thulium, ytterbium and lutetium concentrates, and the strippin...
Embodiment 3
[0056] Step 1: Use 0.5mol / L P507-0.5mol / L P227 mixed system dysprosium and holmium to group the middle yttrium and europium-rich rare earth ore liquid, the degree of saponification is 36%, the organic phase is back-extracted with 3mol / L hydrochloric acid, and the raffinate aqueous phase It is light and medium rare earth enrichment (La~Dy component), and the organic phase is yttrium-rich material 1 (Ho~Lu Y component), Y 2 o 3 The grade is about 83%. The light and medium rare earth enrichment is separated by 1.2mol / LP507 system to separate single rare earth, the degree of saponification is 36%, and the organic phase is back-extracted by 3.5mol / L hydrochloric acid.
[0057] Step 2: Yttrium-rich material 1 is divided into 0.5mol / L P507-0.5mol / L P227 mixed system erbium and thulium, and the raffinate water phase is yttrium-rich material 2 (Ho Er Y component), Y 2 o 3 The grade of lutetium is increased to 88%, and the organic phase is thulium, ytterbium and lutetium enrichment, ...
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