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脱硫细菌的培育及最佳生长条件的研究 被引量:1

Study on Cultivate and Optimum Culture Condition of Desulfurization Microorganism
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摘要 从云南某硫化矿酸性废水中,分离出一株氧化亚铁硫杆菌,其最佳生长条件的研究表明,最佳培养温度为30%左右,最佳生长pH为2.0~2.5,最佳生长初始Fe^2+浓度为0.15mol/L左右,同时在进行细菌培养时接种量取在10%是比较恰当的。 A strain of Thiobacillus ferrooxidans was isolated from the acidic wastewater of a sulfide mine in Yunnan Province. The study results indicated that the best growth conditions of Thiobacillus ferrooxidans were culture temperature about 30℃, initial pH value 2.0 - 2.5, initial ferrous ions concentration about 0.15 mol/L, and the inoculation amount of bacteria culture 10%.
出处 《四川环境》 2006年第6期17-19,共3页 Sichuan Environment
关键词 氧化亚铁硫杆菌 最佳生长条件 脱硫 Thiobacillus ferrooxidans optimum culture condition desulfurization
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  • 1左剑恶,袁琳,胡纪萃,顾夏声.利用无色硫细菌氧化废水中硫化物的研究[J].环境科学,1995,16(6):7-10. 被引量:42
  • 2Watson J H P, Ccsse 3 A,et al.Structural and magnetic studies on heavymetal-adsorbing iron suphide nanoparticles produced by sulphate-reducing bacteria[J].Journal fo Magnetism and Magnetic Materials,2000,214(1-2):13-30.
  • 3Sdvaraj Punjai T, Mark H. Analysis of immobilized cell bioreactors for desulfurization of flue gases and sulfite/sulfate-laden wastewater [J].Biodegradation, 1997,8(4) :227-236.
  • 4Selvaraj Punjai T, Badri N,Microbial process for the reduction of sulfur dioxide[P]. US:5269929 A 14,1993-12.7.
  • 5Lee, Sublette, Keery L.Simultaneous combined microbial removal of sulfur and nitric oxide from a gas stream[J] .Appl. Biochem. Biotechnol, 1991,282(9) :623-634.
  • 6Uisman C J N.Biotechnological sulfide removal from effiuent[J].Wat Sci & Tech,1991,24(3-4):347-356.
  • 7史家良 徐亚同.非紫硫细菌分解高浓度有机废水的研究[J].微生物学通报,1980,7(5):209-212.
  • 8Maree J P,Strydom W F. Biological sulfate removal from industrial effluent in an up flow packed bed reactor [J] .Wat Re, s, 1987,21(2) : 141-146.
  • 9Staxms M,Kuenen J G, et al. Ammonium removal from concentrated waste strum with the anaerobic ammonium oxidation (Anammox) process in different reactor configurations [J] .Water Reseach, 1997,31 (8) : 1955-1962.
  • 10Buusman C J N.Biotechnological sulfide removal from effluent[J].Wat Sci&Tech,1991,24(3/4):247-256.

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  • 1王永川,陈光明,李建新,刘启旺.细菌湿法烟气脱硫试验研究初探[J].中国电机工程学报,2004,24(8):233-237. 被引量:20
  • 2张虹,张春生.黄铁矿自燃机理及其预防[J].铜业工程,2004(3):53-54. 被引量:8
  • 3Soundararajan R, Amyotte P R, Pegg M J. Explosibility hazard of iron sulphide dusts as a function of particle size[J]. Journal of Hazardous Materials, 1996, 51(1-3): 225-239.
  • 4Li W, Tang H, Liu Q, et al. Deep desulfurization of diesel by integrating adsorption and microbial method[J]. Biochemical Engineering Journal, 2009, 44(2): 297-301.
  • 5Soleimani M, Bassi A, Margaritis A. Biodesulfurization of refractory organic sulfur compounds in fossil fuels[J]. Biotechnology Advances, 2007, 25(6): 570-596.
  • 6Sarti A, Pozzi E, Chinalia F A, et al. Microbial processes and bacterial populations associated to anaerobic treatment of sulfate-rich wastewater [J]. Process Biochemistry, 2010, 45(2): 164-170.
  • 7Jorjani E, Chehreh C S, Mesroghli S. Prediction of microbial desulfurization of coal using artificial neural networks[J]. Minerals Engineering, 2007, 20(14): 1285-1292.
  • 8Cardona I C, Márquez M A. Biodesulfurization of two colombian coals with native microorganisms[J]. Fuel Processing Technology, 2009, 90 (9): 1099-1106.
  • 9Lizama H M. A kinetic description of percolation bioleaching[J]. Minerals Engineering, 2004, 17(1): 23-32.
  • 10邹俐宏,钱林,张燕飞,万民熙,邱冠周,杨宇.源自硫化矿区的Acidiphilium属菌的分离及其浸矿性能[J].中国有色金属学报,2008,18(2):336-341. 被引量:9

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