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Preservation of moderately thermophilic culture by freeze drying and frozen preservation way and effect on subsequent bioleaching of chalcopyrite 被引量:2

Preservation of moderately thermophilic culture by freeze drying and frozen preservation way and effect on subsequent bioleaching of chalcopyrite
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摘要 Freeze drying and frozen preservation way was used to preserve a moderately thermophilic culture for bioleaching of chalcopyrite concentrate.After preservation of 15 months,the cell viability rate decreases to 22% with a cell density of 7×107 mL-1.When the growth time was extended from 8 days to 14 days,cell density would increase in a large scale to about 3×108 mL-1.In the bioleaching experiments,unpreserved and preserved cultures were compared for dissolving chalcopyrite concentrate.Before 44 days,the unpreserved culture can reach a high copper extraction of about 17.4 g/L.While the preserved culture shows a rather low copper extraction,which is only 9.7 g/L.When the bioleaching time was extended to 80 days,copper extraction by preserved culture increases remarkably,and the concentration of copper finally achieves up to 18.3 g/L.On the other hand,copper extraction by the unpreserved culture does not show remarkable increase from 44th to the 80th day,and finally the total copper extraction is 19.8 g/L.As a result,total copper extraction in 80 days by preserved culture approaches that by unpreserved culture and freeze drying and frozen preservation even after 15 months does not bring much decrease of bioleaching ability. Freeze drying and frozen preservation way was used to preserve a moderately thermophilic culture for bioleaching of chalcopyrite concentrate.After preservation of 15 months,the cell viability rate decreases to 22% with a cell density of 7×107 mL-1.When the growth time was extended from 8 days to 14 days,cell density would increase in a large scale to about 3×108 mL-1.In the bioleaching experiments,unpreserved and preserved cultures were compared for dissolving chalcopyrite concentrate.Before 44 days,the unpreserved culture can reach a high copper extraction of about 17.4 g/L.While the preserved culture shows a rather low copper extraction,which is only 9.7 g/L.When the bioleaching time was extended to 80 days,copper extraction by preserved culture increases remarkably,and the concentration of copper finally achieves up to 18.3 g/L.On the other hand,copper extraction by the unpreserved culture does not show remarkable increase from 44th to the 80th day,and finally the total copper extraction is 19.8 g/L.As a result,total copper extraction in 80 days by preserved culture approaches that by unpreserved culture and freeze drying and frozen preservation even after 15 months does not bring much decrease of bioleaching ability.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第5期882-887,共6页 中国有色金属学报(英文版)
基金 Project(2004CB619201) supported by the National Basic Research Program of China Projects(50321402,30428014) supported by the National Natural Science Foundation of China Project(NCET-06-0691) supported by the Program for New Century Excellent Talents in Chinese Universities
关键词 保存方法 生物浸出 冷冻干燥 黄铜矿 文化 嗜热 保鲜 冷冻保存 freeze drying and frozen preservation moderately thermophilic culture bioleaching chalcopyrite
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参考文献19

  • 1GOMEZ E,BALLESTER A,GONZALEZ F,BLAZQUEZ M L.Leaching capacity of a new extremely thermophilic microorganism, Sulfolobus rivotinct. Hydrometallurgy . 1999
  • 2ZHOU H B,ZENG W M,YANG Z F,XIE Y J,QIU G Z.Bioleaching of chalcopyrite concentrate by a moderately thermophilic culture in a stirred tank reactor. Bioresource Technology . 2009
  • 3OTERO M C,ESPECHE M C,NADER-MACIAS M E.Optimization of the freeze-drying media and survival throughout storage of freeze-dried Lactobacillus gasseri and Lactobacillus delbrueckii subsp. delbrueckii for veterinarian probiotic applications. Process Biochemistry . 2007
  • 4ZENG Wei-min,ZHOU Hong-bo,WAN Min-xi,CHAO Wei-liang,XU Ai-ling,LIU Xue-duan,QIU Guan-zhou.Preservation of Acidithiobacillus caldus: A moderately thermophilic bacterium and the effect on subsequent bioleaching of chalcopyrite. Hydrometallurgy . 2009
  • 5HAYS H C W,MILLNER P A,JONES J K.A novel and convenient self-drying system for bacterial preservation. Journal of Microbiological Methods . 2005
  • 6ACEVEDO F.The use of reactors in biomining processes. Electronic Journal of Biotechnology . 2000
  • 7LEAHY M J,DAVIDSON M R,SCHWARZ M P.A model for heap bioleaching of chalcocite with heat balance: Mesophiles and moderate thermophiles. Hydrometallurgy . 2007
  • 8ZENG Wei-min,WU Chang-bin,ZHANG Ru-bing,HU Pei-lei,QIU Guan-zhou,GU Guo-hua,ZHOU Hong-bo.Isolation and identification of moderately thermophilic acidophilic iron-oxidizing bacterium and its bioleaching characterization. Transactions of Nonferrous Metals Society of China . 2009
  • 9DOPSON M,LOVGREN L,BOSTROM D.Silicate mineral dissolution in the presence of acidophilic microorganisms: Implications for heap bioleaching. Hydrometallurgy . 2009
  • 10Ehrlich HL.Past,present and future of biohydrometallurgy. Hydrometallurgy . 2001

同被引文献11

  • 1Cancho L,,Blázquez M L,et al.Bioleaching of a chalcopyrite concentrate with moderate thermophilic microorganisms in a continuous reactor sys-tem. Hydrometallurgy . 2007
  • 2Karimi G R,Rowson N A,et al.Bioleaching of copper via iron oxidation from chalcopyrite at elevated temperatures. Food and Bioproducts Pro-cessing . 2010
  • 3Rodriguez Y,Ballester A.New information on the chalcopyrite bioleaching mechanism at low and high temperature. Hydrometallurgy . 2003
  • 4Nelson D L,Beck J V.Chalcocite oxidation and coupled carbon dioxide fixation by Thiobacillus ferrooxidans. Science . 1972
  • 5Dopson M,Sundkvist JE,Lindstrom EB.Toxicity of metal extraction and flotation chemicals to Sulfolobus metallicus and chalcopyrite bioleaching. Hydrometallurgy . 2006
  • 6Plumb JJ,McSweeney NJ,Franzmann PD.Growth and activity of pure and mixed bioleaching strains on low grade chalcopyrite ore. Minerals Engineering . 2008
  • 7VILCáEZ J,YAMADA R,INOUE C.Effect of pH reduction and ferric ion addition on the leaching of chalcopyrite at thermophilic temperatures. Hydrometallurgy . 2009
  • 8任浏祎,覃文庆,王军,张雁生,何小娟.黄铜矿细菌浸出过程中的多因素影响[J].矿冶工程,2008,28(4):61-65. 被引量:8
  • 9张在海,王淀佐,邓吉牛,林大泽.黄铜矿细菌转化与浸出机理探讨[J].中国工程科学,2005,7(S1):266-268. 被引量:6
  • 10聂毅磊,陈宏,罗立津,贾纬,陈星伟.一种浸矿混合菌种的筛选、鉴定及浸矿的研究[J].生物技术通报,2016,32(8):177-183. 被引量:6

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