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采用摇瓶法,考察了溶液中金属离子Ni2+,Fe2+,Fe3+浓度与氨基膦酸型螯合树脂D412相中金属离子吸附量的关系.结果表明,随着金属离子初始浓度的增大,平衡吸附量也在增大,树脂对Fe3+离子的吸附量明显大于对Ni2+和Fe2+离子的吸附量.以双曲线型(Lang-muir)吸附平衡模捌对试验数据进行拟和,线性回归参数R2>0.9.吸附与解吸过程的实验数据表明,氨基膦酸型螯合树脂用于镍矿浸出液分离提纯初步可行.

参考文献

[1] 何炳林.离子交换与吸附树脂[M].上海:上海科技教育出版社,1992:279.
[2] 陈家镛.湿法冶金手册[M].北京:冶金工业出版社,2005
[3] 彭容秋.重金属冶金学[M].长沙:中南大学出版社,2003
[4] Sukla L B;PanchanadikarV V.Bioleaching of lateritic nickel ore using on indigenous micrflora[A].Wyoming,Usa,August,1993:373.
[5] Galvez-Cloutier;Mulligan C;Ouattara A.Biolixiviation of Cu,Ni,Pb and Zn using organic acids produced by Aspergillns niger and Penicillinm simplicissinum[A].,2003:14.
[6] Castro I.M.;Fietto J.L.R. .Bioleaching of zinc and nickel from silicates using Aspergillus niger cultures[J].Hydrometallurgy,2000(1):39-49.
[7] 李洪桂.湿法冶金学[M].长沙:中南大学出版社,1995
[8] Claudia V D;Virginia S T C;Fiona M D .The use of the chelating resin Dowex M-4195 in the adsorption of selected heavy metal ions from manganese solutions[J].HYDROMETALLURGY,2005,78:147.
[9] Deepatana A;Tang J A;Valix M .Comparative study of chelating ion exchange resins for metal recovery from bioleaching of nickel laterite ores[J].Minerals Engineering,2006,19:1280.
[10] Deepat ana A;Valix M .Recovery of nickel and cobalt from orgarlic acid complexes:Adsorption mechanisms of metal-organic complexes onto aminophesphonate chelating resin[J].Journal of Hazardous Materials B,2006,137:925.
[11] Mendes F D;Martins A H .Selective nickel and cobalt uptake from pressure sulfuric acid leach solutions using column resin sorption[J].International Journal of Mineral Processing,2005,77:53.
[12] Kononova O N;Kholmogorov A G;Kachin S V;Mytykh O V Kononov Y S Kalyakina O P Pashkov G L .Ion exchange recovery of nickel from manganese nitrate solutions[J].HYDROMETALLURGY,2000,54:107.
[13] 姜志新.离子交换分离工程[M].天津:天津大学出版社,1992:1.
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