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・ Beryllium azide
・ Beryllium borohydride
・ Beryllium bromide
・ Beryllium carbide
・ Beryllium carbonate
・ Beryllium chloride
・ Beryllium copper
・ Beryllium fluoride
・ Beryllium granuloma
・ Beryllium hydride
・ Beryllium hydroxide
・ Beryllium iodide
・ Beryllium monohydride
・ Beryllium nitrate
・ Beryllium nitride
Beryllium oxide
・ Beryllium oxide (data page)
・ Beryllium poisoning
・ Beryllium sulfate
・ Beryllium sulfide
・ Beryllium sulfite
・ Beryllium telluride
・ Beryllium-10
・ Beryllonite
・ Beryllophantis
・ Beryllophantis allochlora
・ Beryllophantis alphophora
・ Beryllophantis asticta
・ Beryllophantis cochlias
・ Beryllophantis microtera


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Beryllium oxide : ウィキペディア英語版
Beryllium oxide

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Beryllium oxide (BeO), also known as beryllia, is an inorganic compound with the formula BeO. This colourless solid is a notable electrical insulator with a higher thermal conductivity than any other non-metal except diamond, and actually exceeds that of most metals. As an amorphous solid, beryllium oxide is white. Its high melting point leads to its use as a refractory. It occurs in nature as the mineral bromellite. Historically and in materials science, beryllium oxide was called glucina or glucinium oxide. Formation of BeO from beryllium and oxygen releases the highest energy per mass of reactants for any chemical reaction, close to 24 MJ/kg.
==Preparation and chemical properties==
Beryllium oxide can be prepared by calcining (roasting) beryllium carbonate, dehydrating beryllium hydroxide, or igniting metallic beryllium:
:BeCO3 → BeO + CO2
:Be(OH)2 → BeO + H2O
:2 Be + O2 → 2 BeO
Igniting beryllium in air gives a mixture of BeO and the nitride Be3N2.〔 Unlike the oxides formed by the other group 2 elements (alkaline earth metals), beryllium oxide is amphoteric rather than basic.
Beryllium oxide formed at high temperatures (>800 °C) is inert, but dissolves easily in hot aqueous ammonium bifluoride (NH4HF2) or a solution of hot concentrated sulfuric acid (H2SO4) and ammonium sulfate ((NH4)2SO4).

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