Iron-sulphide-based battery and anode
A battery including an anode including iron sulphide as active material, with the sulphur content being at least 5 wt. % of the total of iron and sulphur, a cathode, and an alkaline electrolyte including an alkaline component dissolved in water, with the anode including less than 50 wt. % of other active materials than iron sulphide. Preferably, the sulphur content of the anode is more than 10 wt. % of sulphur, calculated in the total of iron and sulphur and 70 wt. % or less. The use of iron sulphide in the anode provides a rechargeable electrical energy storage system which is low-cost, easy to produce, and environmental friendly, and which shows a long lifetime and has excellent electrochemical properties like high power density and good cycling efficiency. The battery according to the invention also shows superior charge/discharge behavior as compared to e.g. lead-acid and nickel-iron batteries.
1. A battery comprising an anode comprising iron sulphide as active material, with the sulphur content being at least 10 wt. % up to 70 wt. % or less of the total of iron and sulphur, a cathode, and an alkaline electrolyte comprising an alkaline component dissolved in water, with the anode comprising less than 50 wt. % of active materials other than iron sulphide.
2. The battery according to claim 1 , wherein the sulphur content of the anode is in a range of 20-40 wt. %.
3. The battery according to claim 1 , wherein the iron sulphide is derived from a natural iron sulphide mineral.
4. The battery according to claim 1 , wherein the anode contains less than 20 wt. % of active materials other than iron sulphide.
5. The battery according to claim 1 , wherein the anode comprises a binder.
6. The battery according to claim 1 , wherein the anode comprises conductive particles.
7. The battery according to claim 1 , wherein the anode is porous.
8. The battery according to claim 1 , wherein the cathode comprises nickel hydroxide, air-cathodes, manganese dioxide, or cadmium as active material.
9. The battery according to claim 1 , wherein the electrolyte is an aqueous solution comprising a hydroxide of an alkali metal.
10. An anode suitable for use in the battery according to claim 1 , which comprises iron sulphide as active material, having a sulphur content of at least 10 wt. % up to 70 wt. % or less of the total of iron and sulphur, and comprising less than 50 wt. % of active materials other than iron sulphide.
11. The battery according to claim 1 , wherein the anode contains less than 10 wt. % of active materials other than iron sulphide.
12. The battery according to claim 1 , wherein the cathode comprises nickel hydroxide.
13. The battery according to claim 1 , wherein the electrolyte is an aqueous solution comprising lithium, potassium, sodium or cesium hydroxide or any combination thereof.
14. The battery according to claim 1 , wherein the electrolyte is an aqueous solution comprising potassium hydroxide and/or sodium hydroxide.
15. A method for manufacturing the anode as claimed in claim 1 , which comprises the steps of providing particulate iron sulphide, and shaping the particulate iron sulphide to form a shaped object.
16. The method according to claim 15 , wherein the particulate iron sulphide has a mean particle diameter in a range 1-1000 nm.
17. The method according to claim 15 , wherein further components are added to the iron sulphide before shaping.
18. The method according to claim 15 wherein the particulate iron sulphide has a mean particle diameter in a range of 50-600 nm.
19. A device selected from a stationary energy storage device, a peak shaving grid connected device, an automotive battery, a forklift truck, a penlite, a stand-alone energy system, and an electric vehicle comprising the battery of claim 1 .