The recovery of alumina trihydrate during the Bayer process using a water continuous polymer

A method for increasing the floccule size and volume of alumina trihydrate during the Bayer processing of bauxite ore using a flocculant in conjunction with a water continuous polymer. The addition of the flocculant and the water continuous polymer to the alumina trihydrate slurry following the secu...

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Main Authors KEVIN L. O'BRIEN, MICHAEL G. STROMINGER, JING WANG, DAVID C. DAVIS
Format Patent
LanguageEnglish
Published 15.05.2008
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Abstract A method for increasing the floccule size and volume of alumina trihydrate during the Bayer processing of bauxite ore using a flocculant in conjunction with a water continuous polymer. The addition of the flocculant and the water continuous polymer to the alumina trihydrate slurry following the security filtration and settling producing trihydrate that is put through the calcination process to produce purified alumina or used as seed for the precipitation process.
AbstractList A method for increasing the floccule size and volume of alumina trihydrate during the Bayer processing of bauxite ore using a flocculant in conjunction with a water continuous polymer. The addition of the flocculant and the water continuous polymer to the alumina trihydrate slurry following the security filtration and settling producing trihydrate that is put through the calcination process to produce purified alumina or used as seed for the precipitation process.
Author DAVID C. DAVIS
JING WANG
MICHAEL G. STROMINGER
KEVIN L. O'BRIEN
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Snippet A method for increasing the floccule size and volume of alumina trihydrate during the Bayer processing of bauxite ore using a flocculant in conjunction with a...
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SourceType Open Access Repository
SubjectTerms CHEMISTRY
COMPOUNDS OF THE METALS BERYLLIUM, MAGNESIUM, ALUMINIUM,CALCIUM, STRONTIUM, BARIUM, RADIUM, THORIUM, OR OF THERARE-EARTH METALS
INORGANIC CHEMISTRY
METALLURGY
Title The recovery of alumina trihydrate during the Bayer process using a water continuous polymer
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