The Bayer process is the principal industrial method for refining bauxite ore into alumina, aluminum oxide, the essential intermediate step before aluminum metal can be produced by electrolysis. The chemist Carl Josef Bayer invented the process in 1888 to solve bauxite's mixed mineral content, typically only 30 to 60 percent aluminum oxide alongside silica, iron oxides and titanium dioxide that earlier methods could not economically separate. The process heats crushed bauxite in a pressure vessel with a hot sodium hydroxide solution at 150 to 200 degrees Celsius, dissolving the aluminum oxide into sodium aluminate while the other minerals remain undissolved and are filtered out as waste; the alumina is then recovered by seeding the solution with high-purity aluminum hydroxide crystals to trigger precipitation, and roughly 90 percent of the resulting gibbsite is converted into aluminum oxide by heating to about 1,470 kelvin in rotary kilns. It remains the cheapest known refining method and still supplies nearly all of the world's alumina, feeding directly into the Hall-Heroult smelting process already documented on this atlas.
Facts
SignificanceThe principal industrial means of refining bauxite to produce alumina, which must be purified before it can be refined into aluminium. 1 Connections
Associated With
In Field
Source Bayer process, Wikipedia
Sources
1. Bayer process, Wikipedia
History
The Bayer process was invented in 1888 by Carl Josef Bayer.
Lead section, paragraph 1
The Bayer process is the principal industrial means of refining bauxite to produce alumina (aluminium oxide) and was developed by Carl Josef Bayer.
In Field: Metallurgical Engineering, Categories
Metallurgical processes
View the SourceReader Challenges (0)
No disputes yet. Spotted an error or a better source? Open the first one.
Sign in to dispute this or suggest a correction.