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Intensifying digestion of diaspore and separation of alumina and silica
作者姓名:李小斌  彭志宏  刘桂华  周秋生
作者单位:College of Metallurgical Science and Engineering,College of Metallurgical Science and Engineering,College of Metallurgical Science and Engineering,College of Metallurgical Science and Engineering Central South University,Changsha 410083,China,Central South University,Changsha 410083,China,Central South University,Changsha 410083,China,Central South University,Changsha 410083,China
基金项目:Project(G19990 64 910 )supportedbytheNationalKeyFundamentalResearchandDevelopmentProgramofChina,project(50274076)supportedbytheNationalNaturalScienceFoundationofChina
摘    要:1 INTRODUCTIONDespitetheabundantdepositofbauxitesinChi na ,ofthosepredominantisthediasporictypewithhighalumina ,highsilicaandlowferricoxides .Thebauxitedeposit,withthemassratioofaluminatosil ica(A/S)between 4and 8,accountsfor 80 %ofallthebauxitedeposit.Thenatureofhighsilicacontentdeterminesthatthemainlyadoptedtechniquetopro ducealuminainChinashouldbeBayer sinteringcom binationprocessorevenpuresinteringprocess .Althoughadramaticadvancementinaluminaproductionhasbeenachievedandthetechnolo…


Intensifying digestion of diaspore and separation of alumina and silica
LI Xiao bin,PENG Zhi hong,LIU Gui hua,ZHOU Qiu sheng.Intensifying digestion of diaspore and separation of alumina and silica[J].Transactions of Nonferrous Metals Society of China,2003,13(3).
Authors:LI Xiao bin  PENG Zhi hong  LIU Gui hua  ZHOU Qiu sheng
Abstract:It was found that there lies a linear relationship among the thermodynamic data of complicate inorganic compounds with similar components. A method for estimating the thermodynamic data of complicate compound and a thermodynamic database involving alumina production were developed. It was found that the alumina digestion rate of activated diasporic bauxite by means of heat field increased much due to the structure aberration, i.e, from perfect structure to unstable corundum. The results from thermodynamic calculation and experiments showed that it was feasible for desilication at atmospheric pressure, and the effects on equilibrium concentration of SiO2 included temperature, mole ratio of Na2O/Al2O3 (αk), caustic and Na+ concentration. The technology of desilication of green liquor at atmosphere and separation of alumina and silica in aluminate solution with high concentration were established. The reaction activity of compounds containing silica and the converting law among compounds were studied, and the prototype technology of desilication products by hydrotreatment was also developed.
Keywords:alumina  diaspore  intensifying digestion  separation of alumina and silica
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