Application of carbon nanotubes on agglomerates of ore fines to increase the mechanical strength thereof
An application of carbon nanotubes on agglomerates of ore fines to increase the mechanical strength is provided. A process for the preparation of ore agglomerates having enhanced mechanical strength by the application of the carbon nanotubes is also provided.
1. An agglomerate product comprising:
iron, nickel or manganese ore fines, or a mixture thereof; and
a binding agent comprising sodium silicate and carbon nanotubes;
wherein the agglomerate product has a mechanical strength higher than a corresponding agglomerate product without carbon nanotubes.
2. The agglomerate product of claim 1 , wherein the agglomerates of ore fines have an increase in mechanical strength of about 52% to 63% as compared to agglomerates of ore fines without carbon nanotubes.
3. A method of applying carbon nanotubes on agglomerates of ore fines to increase the mechanical strength, comprising:
dispersing carbon nanotubes into a matrix by mechanical mixing or by ultrasonic processing;
performing a mechanical mixture with the ore fines; and
agglomerating the mixture.
4. The method of claim 3 , wherein the agglomerates of ore fines have an increase in mechanical strength of about 52% to 63% as compared to agglomerates of ore fines without carbon nanotubes.
5. The method of claim 4 , wherein the agglomerates of ore fines are selected from a group consisting of iron ore fines, nickel ore fines, manganese ore fines and mixtures thereof.
6. A process for the preparation of ore agglomerates having high mechanical strength, comprising:
dispersing carbon nanotubes into a matrix to form a mixture;
preparing the mixture;
pelletizing or briquetting or extruding the mixture to form pellets or briquettes;
screening the formed pellets or briquettes;
drying the pellets or briquettes; and
screening the pellets or briquettes.
7. The process of claim 6 wherein the matrix comprises at least a binding agent.
8. The process of claim 7 wherein the binding agent comprises liquid sodium silicate.
9. The process of claim 7 wherein the matrix comprises additives including at least one of manioc, corn starch and micron silica.
10. The process of claim 6 wherein:
dispersing the carbon nanotubes is performed by mechanical mixtures or by using ultrasonic processor equipment,
pelletizing is performed by using a disc or drum, and
drying is performed in a conveyor belt furnace at temperatures between about 150 to 200.degree. C.
11. The process of claim 6 wherein the carbon nanotubes are incorporated in the matrix in proportions up to 5% by mass.
12. The process of claim 6 , wherein the ore agglomerates comprise a material selected from the group consisting of iron ore fines, nickel ore fines, manganese ore fines, and mixtures thereof.