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·1408 工程科学学报,第42卷,第11期 zinc leaching residue.Yunnan Metall,2014,43(1):93 from zinc leaching residues by roasting with ammonium sulphate. (卢宇飞,熊国焕,何艳明.锌治炼浸出渣资源化利用技术分析 Hydrometallurgy,2015,158:42 云南治金,2014,43(1):93) [29]Shi Z W,Yang S J,Xue Q H.Recovery of zinc from lead-zinc slag [16]Xu W G,Li WL,Wang P F.Commercial production practice of using ammonia.Hydrometall China,2019,38(4):271 zinc leaching residue treatment process by top-blowing fumace. (石振武,杨守洁,薛群虎.从铅锌废渣中氨浸锌试验研究.湿法 China Nonferrous Metall,2018,47(5):6 冶金,2019,38(4):271) (徐万刚,李文龙,王鹏飞.顶吹炉处理锌浸出渣工艺技术产业 [30]Wang H W,Du X L,He Y,et al.Industrial test on process 化实践.中国有色冶金,2018,47(5):6) optimization for silver flotation from zinc-leached residues. [17]Lei HZ,Yang GC,Li Y G,et al.Study on technology of metallic Precious Me1,2018,39(213 zinc recovery from zinc slag direct thermal processing.Yunnan (王红伟,杜新玲,何意,等.锌浸出渣中银浮选工艺优化工业试 Metall.2018.47(4):63 验.贵金属,2018,39(2):13) (雷华志,杨光灿,李雨耕,等.从锌渣中直接热力回收金属锌的 [31]Song B X,Qiu X Y,Ran J C,et al.Behavior of argentite in the 工艺研究.云南治金,2018,47(4):63) sulphide flotation system.Precious Met,2018,39(2):24 [18]Ghayad I M,El-Ansary A L,Aziz Z AA,et al.Recovery of zinc (宋宝旭,邱显扬,冉金城,等硫化矿浮选体系中辉银矿的浮选 from zinc dross using pyrometallurgical and electrochemical 行为研究.贵金属,2018,39(2):24) methods.Egypt JChem,2019,62(2):373 [32]Lan Z Q.Study on Flotation Behavior and Mechanism of Galena [19]Tang L,Tang C B,Xiao J,et al.A cleaner process for lead Containing Silver[Dissertation].Kunming:Kunming University of recovery from lead-containing hazardous solid waste and zinc Science and Technology,2017 leaching residue via reducing-matting smelting.J Cleaner Prod, (兰志强.含银方铅矿的浮选行为及机理研究学位论文].昆明: 2019,241:118328 昆明理工大学,2017) [20]Steinlechner S,Antrekowitsch J.Extraction of zinc,silver and [33]Zhang R,Li H J.Research and practice of reducing silver in zinc indium via vaporization from jarosite residue /Gaustad G, tailings of conventional hydrometallurgy.World Nonferrous Met, Fleuriault C,Gokelma M,et al.REWAS 2019:Manufacturing the 2019(23):7 Circular Materials Economy.Switzerland:Springer,2019 (张蕊,李恒江.降低常规湿法炼锌尾渣银的研究与实践.世界 [21]Huang WH,LiuT.Side blowing fumace application situation and 有色金属,2019(23):7) development prospect.Copper Eng,2017(3):54 [34]Liu A R.Wang Z Q.Yao H L.et al.Optimization of Ag/Fe (黄文华,刘涛.侧吹炉的应用现状和发展前景.铜业工程 separation flowsheet for reclamation of hydrometallurgical zinc 2017(3):54) residue.Min Metall Eng,016,36(3):51 [22]Li Y B.The smelting process of sulfur residue and zinc residues (刘安荣,王在谦,姚华龙,等.锌浸渣中银铁分离富集试验研究, mixture treatment.Copper Eng,2014(1):上14 矿冶工程,2016,36(3):51) (李允斌.氧浸渣搭配处理锌浸出渣的冶炼方法.铜业工程, [35]Wang X M,Wang G P.Industrial reform practices for silver 2014(1):14) flotation of zinc conventional process leaching residues.Hunan [23]Rao S,Wang D X,Liu Z Q,et al.Selective extraction of zinc, Nonferrous Met,2016,32(4):46 gallium,and germanium from zinc refinery residue using two stage (王学猛,王桂萍.常规流程中锌浸出渣浮选银的工业改造实践 acid and alkaline leaching.Hydrometallurgy,2019,183:38 湖南有色金属,2016,32(4):46) [24]Guan Y J.Study on iron leaching and pH value of Fe hydrolysis [36]Li G D.Study on the Process and Mechanism for Comprehensive in zinc hydrometallurgy.Chin Rare Met,2006,30(3):419 Recovery of Gold,Silver.Lead and Zinc from Pb-Ag (关亚君.湿法炼锌常规工艺铁的浸出及沉铁H值的研究.稀有 Residue[Dissertation].Beijing:University of Science and 金属,2006,30(3):419) Technology Beijing,2017 [25]Lu X W,Cheng L,Li Y L,et al.Experimental research on (李国栋.从铅银渣中综合回收金银铅锌的工艺和机理研究学 optimization and improvement of iron removal process for zinc 位论文].北京:北京科技大学,2017) hydrometallurgy.Nonferrous Met (Extr Metall),2018(11):7 [37]Yang J L.Liao S Z.Liu J G.et al.Experimental research on (鲁兴武,程亮,李俞良,等.锌治炼除铁工艺优化改进试验研究 flotation of zinc leaching residue.J Guangxi Univ (Nat Sci Ed), 有色金属(冶炼部分),2018(11):7) 2019,44(5):1399 [26]Zhang F,Wei C,Deng Z G,et al.Reductive leaching of zinc and (杨金林,廖仕臻,刘继光,等.锌浸出渣浮选试验研究.广西大 indium from industrial zinc ferrite particulates in sulphuric acid 学学报:自然科学版,2019,44(5):1399) media.Trans Nonferrous Met Soc China,2016,26(9):2495 [38]Yao W,Li M L,Zhang M,et al.Lead recovery from zinc leaching [27]Yu G,Peng N,Zhou L,et al.Selective reduction process of zinc residue by flotation.JOM,2019,71(12):4588 ferrite and its application in treatment of zinc leaching residues [39]Zhang Y H,Jin B J,Song Q H,et al.Leaching behavior of lead Trans Nonferrous Met Soc China,2015,25(8):2744 and silver from lead sulfate hazardous residues in [28]Li Y C,Liu H,Peng B,et al.Study on separating of zinc and iron NaCl-CaCl-NaCIO:media.JOM,2019,71(7):2388zinc leaching residue. Yunnan Metall, 2014, 43(1): 93 (卢宇飞, 熊国焕, 何艳明. 锌冶炼浸出渣资源化利用技术分析. 云南冶金, 2014, 43(1):93) Xu W G, Li W L, Wang P F. Commercial production practice of zinc  leaching  residue  treatment  process  by  top-blowing  furnace. China Nonferrous Metall, 2018, 47(5): 6 (徐万刚, 李文龙, 王鹏飞. 顶吹炉处理锌浸出渣工艺技术产业 化实践. 中国有色冶金, 2018, 47(5):6) [16] Lei H Z, Yang G C, Li Y G, et al. Study on technology of metallic zinc  recovery  from  zinc  slag  direct  thermal  processing. Yunnan Metall, 2018, 47(4): 63 (雷华志, 杨光灿, 李雨耕, 等. 从锌渣中直接热力回收金属锌的 工艺研究. 云南冶金, 2018, 47(4):63) [17] Ghayad I M, El-Ansary A L, Aziz Z A A, et al. Recovery of zinc from  zinc  dross  using  pyrometallurgical  and  electrochemical methods. Egypt J Chem, 2019, 62(2): 373 [18] Tang  L,  Tang  C  B,  Xiao  J,  et  al.  A  cleaner  process  for  lead recovery  from  lead-containing  hazardous  solid  waste  and  zinc leaching  residue  via  reducing-matting  smelting. J Cleaner Prod, 2019, 241: 118328 [19] Steinlechner  S,  Antrekowitsch  J.  Extraction  of  zinc,  silver  and indium  via  vaporization  from  jarosite  residue  //  Gaustad  G, Fleuriault C, Gökelma M, et al. REWAS 2019: Manufacturing the Circular Materials Economy. Switzerland: Springer, 2019 [20] Huang W H, Liu T. Side blowing furnace application situation and development prospect. Copper Eng, 2017(3): 54 (黄文华, 刘涛. 侧吹炉的应用现状和发展前景. 铜业工程, 2017(3):54) [21] Li Y B. The smelting process of sulfur residue and zinc residues mixture treatment. Copper Eng, 2014(1): 14 (李允斌. 氧浸渣搭配处理锌浸出渣的冶炼方法. 铜业工程, 2014(1):14) [22] Rao  S,  Wang  D  X,  Liu  Z  Q,  et  al.  Selective  extraction  of  zinc, gallium, and germanium from zinc refinery residue using two stage acid and alkaline leaching. Hydrometallurgy, 2019, 183: 38 [23] Guan Y J. Study on iron leaching and pH value of Fe3+ hydrolysis in zinc hydrometallurgy. Chin J Rare Met, 2006, 30(3): 419 (关亚君. 湿法炼锌常规工艺铁的浸出及沉铁pH值的研究. 稀有 金属, 2006, 30(3):419) [24] Lu  X  W,  Cheng  L,  Li  Y  L,  et  al.  Experimental  research  on optimization  and  improvement  of  iron  removal  process  for  zinc hydrometallurgy. Nonferrous Met (Extr Metall), 2018(11): 7 (鲁兴武, 程亮, 李俞良, 等. 锌冶炼除铁工艺优化改进试验研究. 有色金属(冶炼部分), 2018(11):7) [25] Zhang F, Wei C, Deng Z G, et al. Reductive leaching of zinc and indium  from  industrial  zinc  ferrite  particulates  in  sulphuric  acid media. Trans Nonferrous Met Soc China, 2016, 26(9): 2495 [26] Yu G, Peng N, Zhou L, et al. Selective reduction process of zinc ferrite  and  its  application  in  treatment  of  zinc  leaching  residues. Trans Nonferrous Met Soc China, 2015, 25(8): 2744 [27] [28] Li Y C, Liu H, Peng B, et al. Study on separating of zinc and iron from zinc leaching residues by roasting with ammonium sulphate. Hydrometallurgy, 2015, 158: 42 Shi Z W, Yang S J, Xue Q H. Recovery of zinc from lead-zinc slag using ammonia. Hydrometall China, 2019, 38(4): 271 (石振武, 杨守洁, 薛群虎. 从铅锌废渣中氨浸锌试验研究. 湿法 冶金, 2019, 38(4):271) [29] Wang  H  W,  Du  X  L,  He  Y,  et  al.  Industrial  test  on  process optimization  for  silver  flotation  from  zinc-leached  residues. Precious Met, 2018, 39(2): 13 (王红伟, 杜新玲, 何意, 等. 锌浸出渣中银浮选工艺优化工业试 验. 贵金属, 2018, 39(2):13) [30] Song B X, Qiu X Y, Ran J C, et al. Behavior of argentite in the sulphide flotation system. Precious Met, 2018, 39(2): 24 (宋宝旭, 邱显扬, 冉金城, 等. 硫化矿浮选体系中辉银矿的浮选 行为研究. 贵金属, 2018, 39(2):24) [31] Lan Z Q. Study on Flotation Behavior and Mechanism of Galena Containing Silver[Dissertation]. Kunming: Kunming University of Science and Technology, 2017 (兰志强. 含银方铅矿的浮选行为及机理研究[学位论文]. 昆明: 昆明理工大学, 2017) [32] Zhang R, Li H J. Research and practice of reducing silver in zinc tailings  of  conventional  hydrometallurgy. World Nonferrous Met, 2019(23): 7 (张蕊, 李恒江. 降低常规湿法炼锌尾渣银的研究与实践. 世界 有色金属, 2019(23):7) [33] Liu  A  R,  Wang  Z  Q,  Yao  H  L,  et  al.  Optimization  of  Ag/Fe separation  flowsheet  for  reclamation  of  hydrometallurgical  zinc residue. Min Metall Eng, 2016, 36(3): 51 (刘安荣, 王在谦, 姚华龙, 等. 锌浸渣中银铁分离富集试验研究. 矿冶工程, 2016, 36(3):51) [34] Wang  X  M,  Wang  G  P.  Industrial  reform  practices  for  silver flotation  of  zinc  conventional  process  leaching  residues. Hunan Nonferrous Met, 2016, 32(4): 46 (王学猛, 王桂萍. 常规流程中锌浸出渣浮选银的工业改造实践. 湖南有色金属, 2016, 32(4):46) [35] Li G D. Study on the Process and Mechanism for Comprehensive Recovery of Gold, Silver, Lead and Zinc from Pb-Ag Residue[Dissertation].  Beijing:  University  of  Science  and Technology Beijing, 2017 (李国栋. 从铅银渣中综合回收金银铅锌的工艺和机理研究[学 位论文]. 北京: 北京科技大学, 2017) [36] Yang  J  L,  Liao  S  Z,  Liu  J  G,  et  al.  Experimental  research  on flotation  of  zinc  leaching  residue. J Guangxi Univ (Nat Sci Ed), 2019, 44(5): 1399 (杨金林, 廖仕臻, 刘继光, 等. 锌浸出渣浮选试验研究. 广西大 学学报:自然科学版, 2019, 44(5):1399) [37] Yao W, Li M L, Zhang M, et al. Lead recovery from zinc leaching residue by flotation. JOM, 2019, 71(12): 4588 [38] Zhang Y H, Jin B J, Song Q H, et al. Leaching behavior of lead and  silver  from  lead  sulfate  hazardous  residues  in NaCl‒CaCl2‒NaClO3 media. JOM, 2019, 71(7): 2388 [39] · 1408 · 工程科学学报,第 42 卷,第 11 期
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