Photolysis of Water (Vacuum UV)
H2O → H· + OH·
Tổng quan
Vacuum UV radiation (< 185 nm) directly dissociates water molecules into hydrogen and hydroxyl radicals. This reaction is significant in atmospheric chemistry on Mars and early Earth, where the photolysis of water vapor contributed to the loss of hydrogen to space and the oxidation of surface minerals.
Người tham gia
| Vai trò | Chất | Hệ số | Trạng thái |
|---|---|---|---|
| Chất phản ứng | Water H₂O | 1 | (g) |
Ví dụ thực tế
Mars lost most of its water over billions of years partly because UV photolysis split water vapor in the upper atmosphere.
Tầm quan trọng công nghiệp
Vacuum UV water photolysis is used in ultrapure water treatment for semiconductor manufacturing and in space environment simulation.
Tính chất
- Loại
- Photochemical
- Thuận nghịch
- Không
- Năng lượng
- Thu nhiệt
- ΔH
- 498,0 kJ/mol
Phản ứng liên quan
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Photochemical Smog Formation (NO₂ Photolysis)
Photodegradation of Methylene Blue by TiO₂
Photodissociation of Chlorine Gas
Silver Bromide Photodecomposition
Photosynthesis
Chlorophyll Fluorescence
Frequently Asked Questions
What is the equation for Photolysis of Water (Vacuum UV)?
The balanced equation is: H₂O → H· + OH·.
What type of reaction is Photolysis of Water (Vacuum UV)?
Photolysis of Water (Vacuum UV) is a photochemical reaction.
Is Photolysis of Water (Vacuum UV) exothermic or endothermic?
Photolysis of Water (Vacuum UV) is endothermic (absorbs energy). The enthalpy change (ΔH) is 498.0 kJ/mol.