正在加载图片...
王振银等:锌浸出渣有价金属回收及全质化利用研究进展 ·1409· [40]Ouyang H C.Lead anode slime pretreatment test.Hunan Cleaner Prod,2018,181:408 Nonferrous Met,2016,32(4):33 [52]Gao L X,Dai Z L,Zhang K F,et al.Extraction of silver and lead (欧阳洪川.铅阳极泥湿法预处理试验研究.湖南有色金属, from slag of zinc hydrometallurgy.Nonferrous Met (Extr Metall), 2016,32(4):33) 2018(5):29 [41]Zhang Y F.Zhang H R,Zhong S P,et al.Study on extraction of (高丽霞,戴子林,张魁芳,等.从湿法锌治炼废渣中提取银和铅 lead bismuth from Kaldo fumace smelting slag.Nonferrous Met 有色金属(冶炼部分),2018(5):29) (Extr Metal0,2017(11):21 [53]Sun H Y,Sen W,Kong X,et al.Leaching of lead from lead-silver (张永锋,张焕然,衷水平,等.卡尔多炉熔炼渣提取铅铋工艺研 slag in chloride system.Hydrometall China,2016,35(2):110 究.有色金属(冶炼部分),2017(11):21) (孙红燕,森维,孔馨,等.用氯盐从铅银渣中浸出铅.湿法治金, [42]Xing P,Wang CY,Wang L,et al.Hydrometallurgical recovery of 201635(2):110) lead from spent lead-acid battery paste via leaching and [54]Binnemans K,Jones P T.Solvometallurgy:An emerging branch of electrowinning in chloride solution.Hydrometallurgy,2019.189: extractive metallurgy.Sustainable Metall,017,3(3):570 105134 [55]Palden T,Regadio M,Onghena B,et al.Selective metal recovery [43]Zhou Q F,Jiang K X,Wang H B,et al.Study on from jarosite residue by leaching with acid-equilibrated ionic hydrometallurgical extraction of lead-silver residue from zinc liquids and precipitation-stripping.ACS Sustainable Chem Eng, industry.Nonferrous Met (Extr Metall),2018(6):1 2019.7(4):4239 (周起帆,蒋开喜,王海北,等.锌治炼铅银渣湿法浸出工艺研究 [56]Rodriguez N R,Onghena B,Binnemans K.Recovery of lead and 有色金属(冶炼部分),2018(6):1) silver from zinc leaching residue using methanesulfonic acid.ACS [44]Zhang Y L,Yu X J,Li X B.Kinetics of simultaneous leaching of Sustainable Chem Eng,2019,7(24):19807 Ag and Pb from hydrometallurgical zinc residues by chloride.Rare [57]Li X,Gao WC,Wen J K,et al.Technology status and research Me1,2012,31(4):402 progress of zinc bioleaching.Chin J Eng,2020,42(6):693 [45]Gao L X,Dai Z L,Li G Y,et al.High efficiency recovery of silver (李旭,高文成,温建康,等,锌的生物浸出技术现状及研究进展 from slag of zinc hydrometallurgy.Nonferrous Met(Extr Metall), 工程科学学报,2020,42(6):693) 2016(4):45 [58]Yin S H,Wang L M,Wu A X,et al.Progress of research in copper (高丽霞,戴子林,李桂英,等.从湿法锌治炼废渣中高效回收银 bioleaching technology in China.Chin J Eng,2019,41(2):143 的研究.有色金属(治炼部分),2016(4):45) (尹升华,王雷鸣,吴爱样,等.我国铜矿微生物浸出技术的研究 [46]Zhou CC,Hou J,Guo N,et al.Research of high lead residue 进展.工程科学学报,2019,41(2):143) treatment with chlorine salt hydrometallurgical process.China [59]Niu Z R.Characteristics and Mechanism of the Bioleaching of the Nonferrous Metall,2017,46(5):72 Spent Zn-Mn Batteries at High Pulp Density and Its Resource (周冲冲,侯剑,郭宁,等.氯盐湿法处理高铅渣的研究.中国有 Urilization[Dissertation].Beijing:Beijing Institute of Technology, 色治金,2017,46(5):72) 2016 [47]Niu Q X,Zhou CC,Guo N.Test on treatment of flotation silver (牛志容.高固液比下废旧锌锰电池生物淋沥的特性、机理和资 concentrate from zinc hydrometallurgy with chloride system. 源化利用学位论文].北京:北京理工大学,2016) China Nonferrous Metall,2018,47(3):38 [60]Ye M Y.Studies on Bioleaching of Metals and Leaching (牛勤学,周冲冲,郭宁.氯盐体系处理湿法炼锌浮选银精矿试 Mechanism from Lead-Zinc Sulfide Mine Tailings[Dissertation]. 验研究.中国有色冶金,2018.47(3):38) Guangzhou:Guangdong University of Technology,2017 [48]Li G D,Lin H,Dong Y B,et al.Hydrometallurgy asynchronous (叶茂友.铅锌硫化尾矿中金属的生物浸出行为及浸出机理的 recovery of zinc,lead and silver from Pb-Ag residue.Chin J Rare 研究学位论文].广州:广东工业大学,2017) MeL,2017,41(10):1143 [61]Sethurajan M,Lens P N L,Rene E R,et al.Bioleaching and (李国栋,林海,董颖博,等.湿法治金法从铅银渣中异步回收 selective biorecovery of zinc from zinc metallurgical leach 锌、铅银的试验研究.稀有金属,2017,41(10):1143) residues from the Tres Marias zinc plant (Minas Gerais,Brazil).J [49]Xing P.Ma BZ.Zeng P.et al.Deep cleaning of a metallurgical Chem Technol Biotechnol,2017,92(3):512 zinc leaching residue and recovery of valuable metals.IntJ Miner [62]Sajjad J,Zheng GD,Zhang GS,et al.Bioleaching of copper and Metall Mater,2017,24(11):1217 zinc bearing ore using consortia of indigenous iron oxidizing [50]Ren J,Shen K B,Liu L,et al.Treatment of lead and silver residue bacteria.Extremophiles,2018,22:851 in zinc hydrometallurgy and its recovery process.China [63]Zhang M,Guo X M,Tian B Y,et al.Improved bioleaching of Nonferrous Metall,2019,48(1):39 copper and zinc from brake pad waste by low-temperature thermal (任杰,申开榜,刘乐,等.湿法炼锌铅银渣深度处理及回收工艺 pretreatment and its mechanisms.Waste Manage,2019,87:629 中国有色治金,2019,48(1):39) [64]Li Y,Deng X,Jin K S,et al.Experimental study of the rhizobium [51]Lei C,Yan B,Chen T,et al.Silver leaching and recovery of and iron oxide thiobacillus for heap leaching of zinc leaching slag. valuable metals from magnetic tailings using chloride leaching. Guizhou Sci,2012,30(4):47Ouyang  H  C.  Lead  anode  slime  pretreatment  test. Hunan Nonferrous Met, 2016, 32(4): 33 (欧阳洪川. 铅阳极泥湿法预处理试验研究. 湖南有色金属, 2016, 32(4):33) [40] Zhang Y F, Zhang H R, Zhong S P, et al. Study on extraction of lead & bismuth from Kaldo furnace smelting slag. Nonferrous Met (Extr Metall), 2017(11): 21 (张永锋, 张焕然, 衷水平, 等. 卡尔多炉熔炼渣提取铅铋工艺研 究. 有色金属(冶炼部分), 2017(11):21) [41] Xing P, Wang C Y, Wang L, et al. Hydrometallurgical recovery of lead  from  spent  lead-acid  battery  paste  via  leaching  and electrowinning  in  chloride  solution. Hydrometallurgy,  2019,  189: 105134 [42] Zhou  Q  F,  Jiang  K  X,  Wang  H  B,  et  al.  Study  on hydrometallurgical  extraction  of  lead-silver  residue  from  zinc industry. Nonferrous Met (Extr Metall), 2018(6): 1 (周起帆, 蒋开喜, 王海北, 等. 锌冶炼铅银渣湿法浸出工艺研究. 有色金属(冶炼部分), 2018(6):1) [43] Zhang Y L, Yu X J, Li X B. Kinetics of simultaneous leaching of Ag and Pb from hydrometallurgical zinc residues by chloride. Rare Met, 2012, 31(4): 402 [44] Gao L X, Dai Z L, Li G Y, et al. High efficiency recovery of silver from slag of zinc hydrometallurgy. Nonferrous Met (Extr Metall), 2016(4): 45 (高丽霞, 戴子林, 李桂英, 等. 从湿法锌冶炼废渣中高效回收银 的研究. 有色金属(冶炼部分), 2016(4):45) [45] Zhou  C  C,  Hou  J,  Guo  N,  et  al.  Research  of  high  lead  residue treatment  with  chlorine  salt  hydrometallurgical  process. China Nonferrous Metall, 2017, 46(5): 72 (周冲冲, 侯剑, 郭宁, 等. 氯盐湿法处理高铅渣的研究. 中国有 色冶金, 2017, 46(5):72) [46] Niu Q X, Zhou C C, Guo N. Test on treatment of flotation silver concentrate  from  zinc  hydrometallurgy  with  chloride  system. China Nonferrous Metall, 2018, 47(3): 38 (牛勤学, 周冲冲, 郭宁. 氯盐体系处理湿法炼锌浮选银精矿试 验研究. 中国有色冶金, 2018, 47(3):38) [47] Li G D, Lin H, Dong Y B, et al. Hydrometallurgy asynchronous recovery of zinc, lead and silver from Pb−Ag residue. Chin J Rare Met, 2017, 41(10): 1143 (李国栋, 林海, 董颖博, 等. 湿法冶金法从铅银渣中异步回收 锌、铅银的试验研究. 稀有金属, 2017, 41(10):1143) [48] Xing P, Ma B Z, Zeng P, et al. Deep cleaning of a metallurgical zinc leaching residue and recovery of valuable metals. Int J Miner Metall Mater, 2017, 24(11): 1217 [49] Ren J, Shen K B, Liu L, et al. Treatment of lead and silver residue in  zinc  hydrometallurgy  and  its  recovery  process. China Nonferrous Metall, 2019, 48(1): 39 (任杰, 申开榜, 刘乐, 等. 湿法炼锌铅银渣深度处理及回收工艺. 中国有色冶金, 2019, 48(1):39) [50] Lei  C,  Yan  B,  Chen  T,  et  al.  Silver  leaching  and  recovery  of valuable metals from magnetic tailings using chloride leaching. J [51] Cleaner Prod, 2018, 181: 408 Gao L X, Dai Z L, Zhang K F, et al. Extraction of silver and lead from slag of zinc hydrometallurgy. Nonferrous Met (Extr Metall), 2018(5): 29 (高丽霞, 戴子林, 张魁芳, 等. 从湿法锌冶炼废渣中提取银和铅. 有色金属(冶炼部分), 2018(5):29) [52] Sun H Y, Sen W, Kong X, et al. Leaching of lead from lead-silver slag in chloride system. Hydrometall China, 2016, 35(2): 110 (孙红燕, 森维, 孔馨, 等. 用氯盐从铅银渣中浸出铅. 湿法冶金, 2016, 35(2):110) [53] Binnemans K, Jones P T. Solvometallurgy: An emerging branch of extractive metallurgy. J Sustainable Metall, 2017, 3(3): 570 [54] Palden T, Regadío M, Onghena B, et al. Selective metal recovery from  jarosite  residue  by  leaching  with  acid-equilibrated  ionic liquids  and  precipitation-stripping. ACS Sustainable Chem Eng, 2019, 7(4): 4239 [55] Rodriguez N R, Onghena B, Binnemans K. Recovery of lead and silver from zinc leaching residue using methanesulfonic acid. ACS Sustainable Chem Eng, 2019, 7(24): 19807 [56] Li X, Gao W C, Wen J K, et al. Technology status and research progress of zinc bioleaching. Chin J Eng, 2020, 42(6): 693 (李旭, 高文成, 温建康, 等. 锌的生物浸出技术现状及研究进展. 工程科学学报, 2020, 42(6):693) [57] Yin S H, Wang L M, Wu A X, et al. Progress of research in copper bioleaching technology in China. Chin J Eng, 2019, 41(2): 143 (尹升华, 王雷鸣, 吴爱祥, 等. 我国铜矿微生物浸出技术的研究 进展. 工程科学学报, 2019, 41(2):143) [58] Niu Z R. Characteristics and Mechanism of the Bioleaching of the Spent Zn−Mn Batteries at High Pulp Density and Its Resource Utilization[Dissertation]. Beijing: Beijing Institute of Technology, 2016 (牛志睿. 高固液比下废旧锌锰电池生物淋沥的特性、机理和资 源化利用[学位论文]. 北京: 北京理工大学, 2016) [59] Ye  M  Y. Studies on Bioleaching of Metals and Leaching Mechanism from Lead-Zinc Sulfide Mine Tailings[Dissertation]. Guangzhou: Guangdong University of Technology, 2017 (叶茂友. 铅锌硫化尾矿中金属的生物浸出行为及浸出机理的 研究[学位论文]. 广州: 广东工业大学, 2017) [60] Sethurajan  M,  Lens  P  N  L,  Rene  E  R,  et  al.  Bioleaching  and selective  biorecovery  of  zinc  from  zinc  metallurgical  leach residues from the Três Marias zinc plant (Minas Gerais, Brazil). J Chem Technol Biotechnol, 2017, 92(3): 512 [61] Sajjad J, Zheng G D, Zhang G S, et al. Bioleaching of copper and zinc  bearing  ore  using  consortia  of  indigenous  iron  oxidizing bacteria. Extremophiles, 2018, 22: 851 [62] Zhang  M,  Guo  X  M,  Tian  B  Y,  et  al.  Improved  bioleaching  of copper and zinc from brake pad waste by low-temperature thermal pretreatment and its mechanisms. Waste Manage, 2019, 87: 629 [63] Li Y, Deng X, Jin K S, et al. Experimental study of the rhizobium and iron oxide thiobacillus for heap leaching of zinc leaching slag. Guizhou Sci, 2012, 30(4): 47 [64] 王振银等: 锌浸出渣有价金属回收及全质化利用研究进展 · 1409 ·
<<向上翻页向下翻页>>
©2008-现在 cucdc.com 高等教育资讯网 版权所有