LIU Wei, YANG Hongying, LIU Yuanyuan, LUO Wenjie. Comparison of the Bioleaching and Chemical Leaching of Cobaltiferous Ores[J]. Journal of Northeastern University(Natural Science), 2013, 34(11): 1606-1609.
[1] 潘彤.我国钴矿矿产资源及其成矿作用[J].矿产与地质,2003,17(4):516/518.(Pan Tong.Cobalt resources and its mineralization in China[J].Mineral Resources and Geology,2003,17(4):516/518.) [2] Behera S K,Panda P P,Singh S,et al.Study on reaction mechanism of bioleaching of nickel and cobalt from lateritic chromite overburdens[J].International Biodeterioration & Biodegradation,2011,65:1035/1042.(下转第1614页)(上接第1609页) [3] (d′Hugues P,Cezac P,Cabral T,et al.Bioleaching of cobaltiferous pyrite:a continuous laboratoryscale study at high solids concentration[J].Minerals Engineering,1997,10(5):507/527. [4] 温建康,阮仁满.高砷硫低镍钴硫化矿浸矿菌的选育与生物浸出研究[J].稀有金属,2007,31(4):537/542.(Wen Jiankang,Ruan Renman.Selection of bioleaching bacteria and bioleaching of high arsenic/sulfur,lowgrade nickel/cobalt sulfide ore[J].Chinese Journal of Rare Metals,2007,31(4):537/542.) [5] Yang C R,Qin W Q,Lai S S,et al.Bioleaching of a low grade nickelcoppercobalt sulfide ore[J].Hydrometallurgy,2011,106:32/37. [6] Yang H Y,Wang S H,Song X L,et al.Gold occurrence of Jiaojia gold mine in Shandong province[J].Transactions of Nonferrous Metals Society of China,2011,21:2072/2077. [7] Gautier V,Escobar B,Vargas T.Cooperative action of attached and planktonic cells during bioleaching of chalcopyrite with Sulfolobus metallicus at 70℃[J].Hydrometallurgy,2008,94(1/4):121/126. [8] Tributsch H.Direct versus indirect bioleaching[J].Hydrometallurgy,2001,59:177/185. [9] Crundwell F K.How do bacteria interact with minerals?[J].Hydrometallurgy,2003,71:75/81. [10] Hansford G S,Vargas T.Chemical and electrochemical basis of bioleaching processes[J].Hydrometallurgy,2001,59(2/3):135/145.