An industrial production method for separating valuable elements from aluminum-vanadium-titanium-iron-silicon composite symbiotic ore for recovery and utilization
A technology of valuable elements and production methods, which is applied in the field of separation and recycling of valuable elements, can solve the problems of affecting the normal operation of equipment, difficulty in large-scale industrial application, and low production efficiency, and achieves significant social and economic benefits, and the production process Reduced requirements and high productivity
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0154] Step 1: Coarse Grinding
[0155] The aluminum-vanadium-titanium-iron-silicon composite symbiotic ore is crushed by mechanical crushing (PET-60×100 jaw crusher) to obtain a coarsely crushed ore with a particle size of less than 400 mesh;
[0156] The main component of the raw ore (gross ore) used in embodiment 1 is (mass percentage):
[0157] TF
MgO
TiO 2
MnO
FeO
SiO 2
Fe2 O3
CaO
19.96
4.04
7.30
0.25
8.00
33.51
19.40
7.41
Al 2 o 3
V 2 o 5
K 2 o
MFe
Na 2 o
P
S
sc
13.15
0.18
0.82
0.17
1.59
0.15
0.56
0.0049
co
Ni
Cu
Burn down
Cr 2 o 3
0.011
0.0055
<0.005
2.80
<0.10
[0158] Step 2: Fine Grinding
[0159] The coarse crushed ore is crushed with a grinder (XMQ-240×90 ball mill) to obtain a pulp with a part...
Embodiment 2
[0226] Step 1: Coarse Grinding
[0227] The aluminum-vanadium-titanium-iron-silicon composite symbiotic ore is crushed by mechanical crushing to obtain a coarsely crushed ore with a particle size of 200 mesh;
[0228] The main component of the raw ore (gross ore) used in embodiment 2 is (mass percentage):
[0229] TF
MgO
TiO 2
MnO
FeO
SiO 2
Fe 2 o 3
CaO
19.96
4.04
7.30
0.25
8.00
33.51
19.40
7.41
Al 2 o 3
V 2 o 5
K 2 o
MFe
Na 2 o
P
S
sc
13.15
0.18
0.82
0.17
1.59
0.15
0.56
0.0049
co
Ni
Cu
Burn down
Cr 2 o 3
0.011
0.0055
<0.005
2.80
<0.10
[0230] Step 2: Fine Grinding
[0231] The coarse crushed ore is crushed with a grinder to obtain a pulp with a particle size of less than 200 mesh;
[0232] The mass pe...
Embodiment 3
[0272] Step 1: Coarse Grinding
[0273] The aluminum-vanadium-titanium-iron-silicon composite symbiotic ore is crushed by mechanical crushing to obtain a coarsely crushed ore with a particle size of 300 mesh;
[0274] The main component of the raw ore (gross ore) used in embodiment 3 is (mass percentage):
[0275] TF
MgO
TiO 2
MnO
FeO
SiO 2
Fe 2 o 3
CaO
19.96
4.04
7.30
0.25
8.00
33.51
19.40
7.41
al 2 o 3
V 2 o 5
K 2 o
MFe
Na 2 o
P
S
sc
13.15
0.18
0.82
0.17
1.59
0.15
0.56
0.0049
co
Ni
Cu
Burn down
Cr 2 o 3
0.011
0.0055
<0.005
2.80
<0.10
[0276] Step 2: Fine Grinding
[0277] The coarse crushed ore is crushed with a grinder to obtain a pulp with a particle size of less than 200 mesh;
[0278] The mass pe...
PUM
Property | Measurement | Unit |
---|---|---|
particle size | aaaaa | aaaaa |
particle size | aaaaa | aaaaa |
diameter | aaaaa | aaaaa |
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