Production of micro-crystalline boehmite from hydrothermal processing of Bayer plant alumina tri-hydrate

被引:19
作者
Oh, Chi Jung [1 ]
Yi, Youn Kyu [2 ]
Kim, Seong Jun [3 ]
Tam Tran [2 ]
Kim, Myong Jun [2 ]
机构
[1] Korea Alumina Ltd, Mokpo, South Korea
[2] Chonnam Natl Univ, Dept Energy & Resources Engn, Kwangju, South Korea
[3] Chonnam Natl Univ, Dept Environm Engn, Kwangju, South Korea
关键词
Alumina trihydrate; Hydrothermal leaching; Microuystalline; Boehmite;
D O I
10.1016/j.powtec.2012.10.041
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Plant alumina trihydrate (ATH, Al(OH)(3)) from Korea Alumina (KC) Ltd's Bayer alumina plant was used to synthesize boehmite, a new product used as fire retarding fillers or laminating materials. The hydrothermal treatment conditions were optimized from tests conducted with ATH-water slurries (30, 40 and 50 w/v%) at different temperatures (160-220 degrees C), reaction time (.10-80 min) and mean feed sizes D-50 (1.5-50 mu m). Well crystalline boehmite was formed at a temperature >200 degrees C after 60-minute treatment. The reaction pressure (1.0-2.0 MPa) has no effect on the process. The hexagonal crystal of the starting gibbsite changes to plate-like shape as boehmite is formed. After the treatment, the boehmite mean particle size (4-25 mu m) is generally smaller than the original gibbsite feed (8-50 mu m). For finer ATH feed (1.5-2.5 mu m) there is no change in particle size after the hydrothermal treatment. The highly crystalline boehmite product containing <0.05% Na2O and <0.01% Fe2O3 has higher purity and whiteness than the ATH feed. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:556 / 562
页数:7
相关论文
共 24 条
[1]   Preparation of nanocrystalline alumina under hydrothermal conditions [J].
Al'myasheva, OV ;
Korytkova, EN ;
Maslov, AV ;
Gusarov, VV .
INORGANIC MATERIALS, 2005, 41 (05) :460-467
[2]  
Bauer R., 2004, US Patent, Patent No. [2004/0265219 A1, 20070082996]
[3]  
Dittmar T., 2007, US Patent, Patent No. [2007/0082996 A1, 20100324193]
[4]   Synthesis and characterization of thermoplastic composites filled with γ-boehmite for fire resistance [J].
Droval, Guillaume ;
Aranberri, Ibon ;
Ballestero, Jesus ;
Verelst, Marc ;
Dexpert-Ghys, Jeannette .
FIRE AND MATERIALS, 2011, 35 (07) :491-504
[5]  
Fukuda T., 1994, US Patent, Patent No. [5,306,680, 6143816]
[6]   Hydrothermal preparation of boehmite nanorods by selective adsorption of sulfate [J].
He, Taobo ;
Xiang, Lan ;
Zhu, Shenlin .
LANGMUIR, 2008, 24 (15) :8284-8289
[7]  
Herbert R.G.E., 2010, US Patent, Patent No. [2010/0324193, 5019367]
[8]   The fire retardant behaviour of huntite and hydromagnesite - A review [J].
Hollingbery, L. A. ;
Hull, T. R. .
POLYMER DEGRADATION AND STABILITY, 2010, 95 (12) :2213-2225
[9]   Fire retardant action of mineral fillers [J].
Hull, T. Richard ;
Witkowski, Artur ;
Hollingbery, Luke .
POLYMER DEGRADATION AND STABILITY, 2011, 96 (08) :1462-1469
[10]  
Islam M. A., 2011, Journal of Applied Sciences, V11, P2327, DOI 10.3923/jas.2011.2327.2333