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Are corundum and alumina the same?

Corundum and alumina are chemically identical, both consisting of aluminum oxide (Al2O3), but their physical forms and crystal structures are significantly different, so they differ in practical applications and properties. Here is a detailed comparison of the two:
1. Chemische Zusammensetzung
Alumina (Al2O₃): It is an oxide of aluminum with the chemical formula Al2O₃, which is widely found in nature or synthesized industrially.
– Korund: It is the crystalline form of aluminum oxide (α-Al2O₃), which is the most stable crystal form of Al2O₃.
corundum and alumina
corundum and alumina
2. Differences in structure and properties
CharacteristicKorund (α-Al₂O₃)Other forms of alumina (such as γ-Al₂O₃)
Crystal structureHexagonal close-packed structure, highly orderedCubic or disordered structure, high porosity
HärteMohs hardness 9 (second only to diamond)Low hardness (usually in powder or loose form)
Thermische StabilitätVery high (melting point 2054℃)Lower, may be converted to α type at high temperature
Common formsNatural minerals (such as ruby, sapphire)Industrial synthetic powder, catalyst carrier, usw.
3. Application fields
– Korund:
Gemstone: Ruby (Cr³⁺) and sapphire (Fe²⁺/Ti⁴⁺) when containing trace impurities.
Industrial use: Abrasives (sandpaper, grinding wheels), refractory materials, precision instrument bearings.
Alumina (non-corundum form):
Catalyst carrier: γ-Al₂O₃ is used for catalytic reactions due to its high specific surface area.
Adsorbent: Purify impurities in water or gas.
Ceramics and fillers: Used in electronic components and composite materials.

4. Summary

Connection: Corundum is a form of aluminum oxide, with the same chemical nature.
– Unterschied: Corundum refers specifically to α-Al₂O₃ crystals with high hardness and high stability, while aluminum oxide refers to all forms of Al₂O₃, including amorphous and other crystalline forms.

In simple terms: Corundum is thediamond formof aluminum oxide, while ordinary aluminum oxide may be thegraphite form” – the same composition, different structures lead to different performances.

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