Tozawa K, Nishimura T, Akahori M, Malaga M A. Comparison between purification processes for zinc leach solutions with arsenic and antimony trioxides. Hydrometallurgy, 1992, 30(1-3): 445-461
[2]
Yamashita S, Okubo M, Goto S, Hata K. Purification of zinc leaching solution——mechanism of removal of cobalt by zinc dust with arsenious oxide and copper ion. Metallurgical Review of MMIJ, 1997, 14(1): 37-52
[3]
Wang L Y, Gui W H, Teo K L, Loxton R, Yang C H. Optimal control problems arising in the zinc sulphate electrolyte purification process. Journal of Global Optimization, 2012, 54(2): 307-323
[4]
Zhang Jia-Yan, Ma Zhong-Hai, Qian Xiao-Bin, Li Shao-Ming, Lang Jia-Hong. Application of optimal control strategy to converter gas recovery system. Acta Automatica Sinica, 2012, 38(6): 1017-1024 (章家岩, 马中海, 钱晓斌, 李绍铭, 郎佳红. 转炉煤气回收系统优化控制策略应用. 自动化学报, 2012, 38(6): 1017-1024)
[5]
Yan A J, Chai T Y, Yu W, Xu Z. Multi-objective evaluation-based hybrid intelligent control optimization for shaft furnace roasting process. Control Engineering Practice, 2012, 20(9): 857-868
[6]
Fugleberg S, Jarvinen A, Yllo E. Recent development in solution purification at Outokumpu Zinc Plant, Kokkola. World Zinc, 1993, 93(1): 241-247
[7]
de Má
[8]
ntaras R L, Bridge D, Mcsherry D. Case-based reasoning: an overview. AI Communications, 1997, 10(1): 21-29
[9]
Wu Tie-Bin, Yang Chun-Hua, Sun Bei, Zhu Hong-Qiu, Li Yong-Gang. Grey fuzzy-LSSVM forecasting model and its application in cobalt removal from zinc electrolyte. The Chinese Journal of Nonferrous Metals, 2012, 22(8): 2382-2386 (伍铁斌, 阳春华, 孙备, 朱红球, 李勇刚. 灰色模糊LSSVM预测模型在锌净化除钴中的应用. 中国有色金属学报, 2012, 22(8): 2382-2386)
[10]
B?ckman O, ?stvold T. Products formed during cobalt cementation on zinc in zinc sulfate electrolytes. Hydrometallurgy, 2000, 54(2-3): 65-78
[11]
J?ri N. Statistical analysis of cobalt removal from zinc electrolyte using the arsenic-activated process. Hydrometallurgy, 2004, 73(1-2): 123-132
[12]
Gui Wei-Hua, Yang Chun-Hua, Chen Xiao-Fang, Wang Ya-Lin. Modeling and optimization problems and challenges arising in nonferrous metallurgical processes. Acta Automatica Sinica, 2013, 39(3): 197-207 (桂卫华, 阳春华, 陈晓方, 王雅琳. 有色冶金过程建模与优化的若干问题及挑战. 自动化学报, 2013, 39(3): 197-207)
[13]
Gui Wei-Hua, Yang Chun-Hua, Li Yong-Gang, He Jian-Jun, Yin Lin-Zi. Data-driven operational-pattern optimization for copper flash smelting process. Acta Automatica Sinica, 2009, 35(6): 717-724 (桂卫华, 阳春华, 李勇刚, 贺建军, 尹林子. 基于数据驱动的铜闪速熔炼过程操作模式优化及应用. 自动化学报, 2009, 35(6): 717-724)
[14]
Khanal S K, Huang J C. ORP-based oxygenation for sulfide control in anaerobic treatment of high-sulfate wastewater. Water Research, 2003, 37(9): 2053-2062
[15]
Yang Chun-Hua, Zhu Hong-Qiu, Gui Wei-Hua, Wu Tie-Bin, Zhang Quan-Du, Wei Wen-Wu, Hu Zhi-Kun, Li Yong-Gang, Sun Bei, Lin Tian-Shui. Spent Acid Dosage Control in Cobalt Removal with Arsenic in Zinc Hydrometallurgy, CHN. Patent 201210204301, October 2012 (阳春华, 朱红求, 桂卫华, 伍铁斌, 张权度, 魏文武, 胡志坤, 李勇刚, 孙备, 林天水. 一种锌湿法冶炼砷盐净化除钴过程废酸添加控制方法, 中国, 201210204301, 2012年10月)
[16]
Lin C F, Wang S D. Fuzzy support vector machines. IEEE Transactions on Neural Networks, 2002, 13(2): 464-471