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The Becher process is a process to produce , a form of , from the ore . Although it is competitive with the and the sulfate process, . the Becher process is not used on scale.
(2025). 9783527303854

With the idealized formula FeTiO3, ilmenite contains 55-65% , the rest being . The Becher process, like other beneficiation processes, aims to remove iron. The Becher process exploits the conversion of the ferrous iron (FeO) to ferric iron (Fe2O3). Ilmenite ores can be upgraded to synthetic rutile by increasing their TiO2 content to between 90 and 96 percent.


History
This technology was developed in the early 1960s in Western Australia by a joint initiative between industry and government. The process was named after Robert Gordon Becher, who while working at the Western Australian Government Chemical Laboratories (the precursor to ChemCentre) invented, developed and introduced the technique to the Western Australian Mineral Sands industry. The process was patented in 1961.


Process
The Becher process is suitable for weathered ilmenite that has low of and . There are four steps involved in removing the iron portion of the ilmenite:
  1. Reduction
  2. Leaching


Oxidation
Oxidation involves heating the ilmenite in a rotary kiln with air to convert iron to iron(III) oxide:
4 FeTiO3 + O2 → 2 Fe2O3·TiO2 + 2 TiO2

This step is suitable for a range of ilmenite-containing feedstocks.


Reduction
Reduction is performed in a rotary kiln with pseudobrookite (Fe2O3.TiO2), coal, and sulfur, then heated to a temperature greater than 1200 °C. The iron oxide in the mineral grains is reduced to metallic iron to produce reduced ilmenite:
Fe2O3·TiO2 + 3 CO → 2 Fe + TiO2 + 3 CO2

The "reduced ilmenite" is separated from the char prior to the next step.


Aeration
Aeration involves the removal of the metallic iron created in the last step by "rusting" it out. This conversion is achieved in large tanks that contain 1% ammonium chloride solution with air being pumped through the tank. The tank is being continuously agitated, and the iron will rust and precipitate in the form of a slime.
4 Fe + 3 O2 → 2 Fe2O3

The finer iron oxide is then separated from the larger particles of synthetic rutile.


Acid leach
Once the majority of the iron oxide has been removed the remainder of it is leached away using 0.5M .


Further reading

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