Citation: | FAN Shang, CHEN Wen-mi, LIANG Gao-jie. Behavior of sodium oxalate in seeded precipitation process of sodium aluminate solution[J]. Chinese Journal of Engineering, 2018, 40(1): 51-58. doi: 10.13374/j.issn2095-9389.2018.01.007 |
[1] |
Machold T, Laird D W, Rowen C C, et al. Decomposition of Bayer process organics:phenolates, polyalcohols, and additional carboxylates. Hydrometallurgy, 2011, 107(3-4):68
|
[3] |
Power G, Loh J S C, Wajon J E, et al. A review of the determination of organic compounds in Bayer process liquors. Anal Chim Acta, 2011, 689(1):8
|
[5] |
Power G, Loh J S C, Vernon C. Organic compounds in the processing of lateritic bauxites to alumina Part 2:effects of organics in the Bayer process. Hydrometallurgy, 2012, 127-128:125
|
[8] |
Mahmoudian M, Ghaemi A, Shahhosseini S. Removal of carbonate and oxalate pollutants in the Bayer process using thermal and chemical techniques. Hydrometallurgy, 2015, 154:137
|
[11] |
Fu W, Vaughan J, Gillespie A, et al. Mechanisms of polyacrylate modified sodium oxalate crystallization from highly alkaline solutions. Cryst Growth Des, 2016, 16(3):1519
|
[15] |
Rosenqvist J, Axe K, Sjöberg S, et al. Adsorption of dicarboxylates on nano-sized gibbsite particles:effects of ligand structure on bonding mechanisms. Colloids Surf A, 2003, 220(1-3):91
|
[17] |
Seyssiecq I, Veesler S, Mangin D, et al. Modelling gibbsite agglomeration in a constant supersaturation crystallizer. Chem Eng Sci, 2000, 55(23):5565
|
[18] |
Seyssiecq I, Veesler S, Boistelle R, et al. Agglomeration of gibbsite Al(OH)3 crystals in Bayer liquors. Influence of the process parameters. Chem Eng Sci, 1998, 53(12):2177
|