Sodium-Sulfur Battery
2Na + 3S → Na2S3
Aperçu
Sodium-sulfur batteries operate at 300–350°C with molten sodium anode, molten sulfur cathode, and a solid beta-alumina ceramic electrolyte that conducts Na⁺ ions. Cell voltage is about 2.0 V with energy density of 150–240 Wh/kg. Both sodium and sulfur are abundant and cheap, making NaS attractive for grid storage.
Participants
Exemple du quotidien
Japan uses NaS batteries for grid-scale energy storage, with over 200 MW of installed capacity stabilizing the power grid.
Importance industrielle
NaS batteries are deployed in grid-scale energy storage (MW-scale), peak shaving, and renewable energy integration.
Propriétés
- Type
- Electrochemical
- Réversible
- Oui
- Énergie
- Exothermique
- ΔH
- -420,0 kJ/mol
Réactions associées
Electrorefining of Copper
Alkaline Battery Discharge
Anodizing of Aluminum
Chlor-Alkali Electrolysis
Nickel-Metal Hydride Battery
Daniell Cell (Zinc-Copper Galvanic Cell)
Electrolysis of Molten NaCl (Downs Process)
Lead-Acid Battery Discharge
Hall-Héroult Process (Aluminum Smelting)
Electrolysis of Water
Frequently Asked Questions
What is the equation for Sodium-Sulfur Battery?
The balanced equation is: 2Na + 3S → Na₂S₃.
What type of reaction is Sodium-Sulfur Battery?
Sodium-Sulfur Battery is a electrochemical reaction. It is reversible under certain conditions.
Is Sodium-Sulfur Battery exothermic or endothermic?
Sodium-Sulfur Battery is exothermic (releases energy). The enthalpy change (ΔH) is -420.0 kJ/mol.