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  2. AlGa - Wikipedia

    en.wikipedia.org/wiki/AlGa

    The alloy can be reacted with water to form hydrogen gas(H2), aluminum hydroxide and gallium metal. [2] Normally, aluminum does not react with water, since it quickly reacts in air to form a passivation layer of aluminum oxide. AlGa alloy is able to create aluminum nanoparticles for the hydrogen producing reaction. [3] [4] Since this reaction ...

  3. Aluminium amalgam - Wikipedia

    en.wikipedia.org/wiki/Aluminium_amalgam

    It is written as Al(Hg) in reactions. [1] Al(Hg) may be prepared by either grinding aluminium pellets or wire in mercury, or by allowing aluminium wire to react with a solution of mercury(II) chloride in water. [2] [3] [1] This amalgam is used as a chemical reagent to reduce compounds, such as of imines to amines. The aluminium is the ultimate ...

  4. Oxygen compatibility - Wikipedia

    en.wikipedia.org/wiki/Oxygen_compatibility

    In an oxygen system the presence of oxygen is implied, and in a sufficiently high partial pressure of oxygen, most materials can be considered fuel. Potential ignition sources are present in almost all oxygen systems, but fire hazards can be mitigated by controlling the risk factors associated with the oxygen, fuel, or heat, which can limit the ...

  5. Gallium - Wikipedia

    en.wikipedia.org/wiki/Gallium

    Hydrogen generation: Gallium disrupts the protective oxide layer on aluminium, allowing water to react with the aluminium in AlGa to produce hydrogen gas. [ 106 ] Humor : A well-known practical joke among chemists is to fashion gallium spoons and use them to serve tea to unsuspecting guests, since gallium has a similar appearance to its lighter ...

  6. Bayer process - Wikipedia

    en.wikipedia.org/wiki/Bayer_process

    The Bayer process is the principal industrial means of refining bauxite to produce alumina (aluminium oxide) and was developed by Carl Josef Bayer.Bauxite, the most important ore of aluminium, contains only 30–60% aluminium oxide (Al 2 O 3), the rest being a mixture of silica, various iron oxides, and titanium dioxide. [1]

  7. Liquid metal embrittlement - Wikipedia

    en.wikipedia.org/wiki/Liquid_metal_embrittlement

    Liquid metal embrittlement (also known as LME and liquid metal induced embrittlement) is a phenomenon of practical importance, where certain ductile metals experience drastic loss in tensile ductility or undergo brittle fracture when exposed to specific liquid metals.

  8. Gallium compounds - Wikipedia

    en.wikipedia.org/wiki/Gallium_compounds

    At room temperature, gallium metal is not reactive with air and water because it forms a passive, protective oxide layer. At higher temperatures, however, it reacts with atmospheric oxygen to form gallium(III) oxide, Ga 2 O 3. [4] Reducing Ga 2 O 3 with elemental gallium in vacuum at 500 °C to 700 °C yields the dark brown gallium(I) oxide, Ga ...

  9. Aluminium(I) oxide - Wikipedia

    en.wikipedia.org/wiki/Aluminium(I)_oxide

    Aluminium as a metal fuel with oxidizers creates highly exothermic reactions. When Al 2 O 3 is added to a pressure system, the reaction goes from steady, to accelerating, to unstable. This reaction indicates that unstable intermediates such as AlO or Al 2 O condense or do not form, which prevent acceleration and convection down the pressure ...