YANG You-jian, LI You-cai, WANG Zhao-wen, SHI Zhong-ning. Dissolution and Agglomeration Behavior of Alumina in Aluminum Electrolysis[J]. Journal of Northeastern University(Natural Science), 2021, 42(1): 55-61.
[1]邱竹贤.铝电解原理与应用[M].徐州:中国矿业大学出版社,1998:404-406.(Qiu Zhu-xian.Theory and application of aluminium electrolysis[M].Xuzhou:China University of Mining and Technology Press,1998:404-406.) [2]Lavoie P,Taylor M,Metson J.A review of alumina feeding and dissolution factors in aluminum reduction cells[J].Metallurgical and Materials Transactions B,2016,47(4):2690-2696. [3]徐君莉,石忠宁,高炳亮,等.氧化铝在熔融冰晶石中的溶解[J].东北大学学报(自然科学版),2003,24(9):832-834.(Xu Jun-li,Shi Zhong-ning,Gao Bing-liang,et al.Dissolution of alumina in molten cryolite[J].Journal of Northeastern University(Natural Science),2003,24(9):832-834.) [4]Wang X.Alumina dissolution in cryolitic melts:a literature review[C]//TMS Proceedings—Light Metals.Nashville:Springer-Verlag,2000:41-54. [5]Bagshaw A N,Kuschel G I,Taylor M P,et al.Effect of operating conditions on the dissolution of primary and secondary (reacted) alumina powders in electrolytes[C]//TMS Proceedings—Light Metals.New Orleans:Springer-Verlag,1985:649-659. [6]Lyu Xiao-jun,Shuang Ya-jing,Li Jie,et al.Physicochemical properties of industrial aluminum electrolytes enriching Li and K:the liquidus temperature[J].Metallurgical and Materials Transactions B,2017,48(2):1315-1320. [7]吕晓军,双亚静,胡凌云,等.铝电解质初晶温度和氧化铝溶解度的理论计算[J].轻金属,2015(9):27-31.(Lyu Xiao-jun,Shuang Ya-jing,Hu Ling-yun,et al.Theoretical calculation of primary crystallization temperature and alumina solubility of alumina electrolyte[J].Light Metals,2015(9):27-31.) [8]Raahauge B E.Smelter grade alumina quality in 40+ year perspective:where to from here?[C]//TMS Proceedings—Light Metals.Orlando:Springer-Verlag,2015:73-78. [9]付雪冰,李志坚,李心慰,等. 煅烧温度对工业氧化铝相变及活性的影响[J].耐火材料,2016,50(3):177-180.(Fu Xue-bing,Li Zhi-jian,Li Xin-wei,et al.Influence of calcining temperature on phase transformation and activity of industrial alumina[J].Refractories,2016,50(3):177-180.) [10]Thonstad J,Nordmo N,Paulsen J B.Dissolution of alumina in molten cryolite[J].Metallurgical Transactions,1972,2:403-408. [11]Gerlach J,Hennig U,Kern K.The dissolution of aluminum oxide in cryolite melts[J].Metallurgical and Materials Transactions B,1975,3:83-86. [12]Less L N.The crusting behavior of smelter aluminas[J].Metallurgical Transactions B,1977,8:219-225. [13]李茂,高玉婷,白晓,等. 300kA铝电解槽中氧化铝颗粒的溶解模拟[J].中国有色金属学报,2017,27(8):1738-1747.(Li Mao,Gao Yu-ting,Bai Xiao,et al.Simulation of alumina particle dissolution in 300kA aluminum electrolytic cell[J].The Chinese Journal of Nonferrous Metals,2017,27(8):1738-1747.) [14]Haverkamp R G,Welch B J.Modelling the dissolution of alumina powder in cryolite[J].Chemical Engineering and Processing,1998,37(2):177-187. [15]Gurvich L V,Veyts I V,Alcock C B.Thermodynamic properties of individual substances[M].4th ed.New York:CRC Press,1996:448-707. [16]Phan-Xuan D,Castanet R,Laffitte M.Microcalorimetric study of alumina dissolution in cryolitic baths[C]//TMS Proceedings—Light Metals.Hoboken:Springer-Verlag,1975:159-177. [17]Wai-Poi N,Welch B J.Comparing alumina quality specifications and smelter expectations in cells[C]//TMS Proceedings—Light Metals.Hoboken:Springer-Verlag,1994:345-350. [18]Wilkening S,Reny P,Murphy B.Anode cover material and bath level control[C]//TMS Proceedings—Light Metals.San Francisco:Springer-Verlag,2005:367-372. [19]Dando N,Wang X,Sorensen J,et al.Impact of thermal pretreatment on alumina dissolution rate and HF evolution[C]//TMS Proceedings—Light Metals.Seattle:Springer-Verlag,2010:541-546.(上接第42页) [10]Fernandez A I,Uranga P,Lopez B,et al.Static recrystallization behavior of a wide range of austenite grain sizes in microalloyed steel[J].ISIJ International,2000,40(9):893-901. [11]Shimizu Y,Iwatani J,Yamasaki Y,et al.Development of new hot rolling process for thin strip rolling[J].Mitsubishi Heavy Industries Technical Review,2000,37(2):45-47. [12]Rong Z,Amp W E,Limited I.Discussion of promoting endless strip production technology in China[J].Steel Rolling,2016,33(5):54-55. [13]Mao X P.Semi-endless rolling technology of thin slab continuous casting and rolling technology[C]//International Symposium on Thin Slab Casting and Rolling (TSCR’2002).Guangzhou,2008:161-170. [14]徐匡迪,刘清友.薄板坯流程连铸连轧过程中的细晶化现象分析[J].钢铁,2005,40(12):1-9.(Xu Kuang-di,Liu Qing-you.Study on grain refinement during thin slab casting and rolling[J].Iron & Steel,2005,40(12):1-9.) [15]颜建新,付兵,项利,等. 低温高磁感取向硅钢连铸与均热过程AlN和MnS析出的热力学[J].钢铁研究学报,2014,26(10):35-39.(Yan Jian-xin,Fu Bing,Xiang Li,et al.Precipitation thermodynamics of AlN and MnS in low temperature high magnetic induction grain-oriented silicon steel during continuous casting and soaking[J].Journal of Iron and Steel Research,2014,26(10):35-39.) [16]Flemings M C.Solidification processing[J].Metallurgical Transactions,1974,5(10):2121-2134.