Leaching of minerals and sequestration of CO
A method for leaching of minerals and sequestration of CO 2 is disclosed, wherein the method comprises forming a rock pile; injecting exhaust gas containing CO 2 in the lower part of the rock pile; spraying leaching liquid on top of the rock pile; collecting enriched leaching liquid from a lower part of the rock pile; precipitating mineral carbonates from the enriched leaching liquid, or further extracting dissolved elements or compounds.
1. A method for leaching of minerals and sequestration of CO 2 , comprising:
forming a rock pile;
injecting an emission gas comprising CO 2 into a lower part of the rock pile;
supplying a leaching liquid in a top part of the rock pile;
collecting an enriched leaching liquid from the lower part of the rock pile, wherein the leaching liquid comprises dissolved minerals and carbonate ions.
2. The method of claim 1 , wherein the method further comprises
precipitating mineral carbonates from the enriched leaching liquid, thereby sequestering CO 2 in the form of solid mineral carbonates.
3. The method of to claim 2 , wherein the method further comprises
extracting one or more metals from the enriched leaching liquid before or after sequestering CO 2 in the form of solid mineral carbonates.
4. The method of claim 3 , wherein the extraction is performed by pH or E h controlled precipitation, by ion exchange, or solvent extraction electro winning.
5. The method, wherein the rock is tailings or waste rock material from the extractive industry.
6. The method of claim 1 , wherein the rock pile comprises silicates comprising carbonate forming elements selected from calcium, magnesium, and iron.
7. The method of claim 1 wherein the rock comprises silicates, oxide minerals enriched in one or more metals comprising copper, nickel, silver, zinc, uranium, thorium, wolfram, molybdenum and rare earth elements (REE), optionally together with one or more sulfide minerals of copper, nickel, zinc or silver.
8. The method of claim 1 , wherein the leaching liquid is water, hydrochloric acid, sulfuric acid, nitric acid, carbonic acid or a mixtures thereof.
9. The method of claim 2 , wherein the precipitation is controlled by controlling the pH of the leaching solution.
10. The method of claim 1 , wherein the emission gas containing CO 2 contains rest heat.
11. the method of claim 1 , wherein the emission gas is power plant gas emission or hydrated lime/lime-cement plant gas emission.
12. A plant for leaching of minerals and sequestration of CO 2 comprising a rock pile, a gas distribution system arranged below or in a lower part of the rock pile in fluid communication with a source for emission gas comprising CO 2 and comprising gas outlets for releasing emission gas into the rock pile, a leaching liquid distribution system arranged above or in an upper part of the rock pile, and an enriched leaching liquid collection system arranged below the gas outlets.
13. The plant of claim 12 , wherein the enriched leaching liquid collection system comprises at least one pipeline in fluid communication with a precipitation unit, where said precipitation unit comprises pH-controlling or E h -controlling equipment; and wherein the precipitation unit is adapted for precipitation of metal carbonates from the leaching liquid.
14. The plant of claim 12 or 13 , wherein the enriched leaching liquid collection system comprises at least one pipeline in fluid communication with a plant for extracting one or more metals selected from the group comprising copper, zinc, nickel, rare earth elements, uranium, wolfram, molybdenum and thorium by solvent extracting, ion exchange, or pH or E h controlled precipitation.
15. The plant of claim 12 or 13 , wherein the gas distribution system comprises mainly vertically pipes arranged at the bottom of the rock pile with a plurality of openings.