Lead-Acid Battery Discharge
Pb + PbO2 + 2H2SO4 → 2PbSO4 + 2H2O
Genel Bakış
During discharge, lead is oxidized to PbSO₄ at the anode while PbO₂ is reduced to PbSO₄ at the cathode, consuming sulfuric acid and producing water. The cell voltage is about 2.1 V, and six cells in series give the standard 12.6 V car battery. Invented by Gaston Planté in 1859, it remains the world's most recycled product.
Katılımcılar
| Rol | Madde | Katsayı | Hal |
|---|---|---|---|
| Reaktan | Lead Pb | 1 | (s) |
| Reaktan | Sulfuric Acid H₂SO₄ | 2 | (aq) |
| Ürün | Water H₂O | 2 | (l) |
Günlük Örnek
The 12V battery that starts your car every morning uses this exact lead-acid chemistry, invented over 160 years ago.
Endüstriyel Önemi
Lead-acid batteries represent a $45 billion global market. They are 99% recyclable and dominate automotive starting, UPS, and telecom backup.
Özellikler
- Tür
- Electrochemical
- Geri Dönüşümlü
- Evet
- Enerji
- Ekzotermik
- ΔH
- -359,0 kJ/mol
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Frequently Asked Questions
What is the equation for Lead-Acid Battery Discharge?
The balanced equation is: Pb + PbO₂ + 2H₂SO₄ → 2PbSO₄ + 2H₂O.
What type of reaction is Lead-Acid Battery Discharge?
Lead-Acid Battery Discharge is a electrochemical reaction. It is reversible under certain conditions.
Is Lead-Acid Battery Discharge exothermic or endothermic?
Lead-Acid Battery Discharge is exothermic (releases energy). The enthalpy change (ΔH) is -359.0 kJ/mol.