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完全混合生物工艺脱除二氧化硫气体 被引量:3

Desulfurization by completely mixed biological process
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摘要 运用完全混合生物处理工艺,以预酸化的废糖蜜作为碳源进行了微生物法去除SO2气体的研究,在简单粗放的实验条件下,研究了脱硫脱硫弧菌对预酸化的废糖蜜中有机酸的利用情况和对较高浓度SO2气体的去除效果,并对产物H2S在第二级生物反应器中的去除率进行了测定。实验结果表明,脱硫脱硫弧菌能利用预酸化的废糖蜜中的丙酮酸和乳酸作为碳源,乙酸作为主要转化产物,当二氧化硫进口浓度在1 865?4 637 mg/m3之间时,在1#生物反应器中,SO2去除率在91%以上,最终出口SO2去除率为95.5%,产生的H2S在2#反应器中几乎被脱氮硫杆菌全部转化,平均去除率为98%,菌体浓度均十分稳定,系统运行状况良好。 With the applying of completely mixed biological process,microbiological method of remov-ing SO2 was studied as pre-acidified waste molasses was used as carbon source.Under extensive experi-mental condition,Desulfovibrio desulfuricans' utilization situation of organic acids in pre-acidified waste molasses as well as its desulfurization effect of sulfur dioxide in high concentration were researched,at the same time,the removal rate of the product H2S in the second biological reactor was also determined.The results suggested that Desulfovibrio desulfuricans could exploit pyruvic acid and the lactic acid in pre-acidified waste molasses as its carbon source,with acetic acid as main product.When the inlet concentration of SO2 ranged from 1 865 mg/m3 to 4 637 mg/m3,the removal rate of SO2 was more than 91% in 1# biological reactor and the final removal rate of SO2 was 95.5%,the produced H2S was nearly all transformed with the mean removal rate of 98%.pH and the concentration of the bacteria were quite stable and the system operated well.
出处 《微生物学通报》 CAS CSCD 北大核心 2011年第3期341-347,共7页 Microbiology China
基金 国家自然科学基金项目(No.30470269) 山西省高校高新技术产业化项目(No.2010012)
关键词 废糖蜜 脱硫 脱硫脱硫弧菌 脱氮硫杆菌 Waste molasses Desulfurization Desulfovibrio desulfuricans Thiobacillus denitrificans
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  • 1Lens PNL, Gastesi R, Lettinga G. Use of sulfate reducing cell suspension bioreactors for the treatment of SO2 rich flue gases[J]. Biodegradation, 2003, 14(3): 229-240.
  • 2La Motta EJ. Kinetics of growth and substrate uptake in a biological film system[J]. Applied and Environmental Microbiology, 1976, 31(2): 286-293.
  • 3王艳锦,郑正.生物滴滤塔脱除SO_2的填料选择研究[J].安全与环境学报,2008,8(6):47-49. 被引量:10
  • 4赵会军,刘凯,李俊玲.Bio-SR工艺中T.f菌生长环境影响因素正交试验研究[J].天然气化工—C1化学与化工,2009,34(2):16-19. 被引量:2
  • 5Badri ND, Kerry LS. Reduction of sulfur dioxide by desulforibvio desulfuricans in co-culture with fermentative heterographs[J]. Biotechnology and Bioengineering,1989(34):405-409.
  • 6Selvaraj PT, Sublette KL. Microbial reduction of sufur dioxide with anaerobically digested municipal sewage biosolids as electron donors[J]. Biotechnology Prog, 1995, 11(2): 153-158.
  • 7Rao AG, Ravichandra P, Joseph J, et al. Microbial conversion of sulfur dioxide in fluegas to sulfide using bulk drug industry wastewater as an organic source by mixedcul-tures of sulfate reducing bacteria [J]. Journal of Hazardous Material. 2007, 147(3): 718-725.
  • 8Duan HQ, Koe LCC, Yan R. Treatment of H2S using a horizontal biotrickling filter based on biological activated carbon: reactor setup and performance evaluation[J]. Appl Microbiol Biotechnol, 2005, 67(1): 143-149.
  • 9Duan HQ, Koe LCC, Yan R, et al. Biological treatment of HzS using pellet activated carbon as a carrier of microorganisms in a biofilter[J]. Water Res, 2006, 40(14): 2629-2636.
  • 10Bailon L. Development of a biotrickling filter for the removal of HzS from biogas[C]. Proceedings of the 2005 international congress biotechniques for air pollution control. La Corufia, Spain, 2005: 143-148.

二级参考文献50

  • 1王英刚,魏德洲,高丹,李小东.生物膜液相催化氧化烟气脱硫实验研究[J].安全与环境学报,2005,5(1):72-75. 被引量:6
  • 2贡俊,张肇铭.脱氮硫杆菌氧化硫化氢过程中的生物氧化和化学氧化[J].环境科学学报,2006,26(3):477-482. 被引量:13
  • 3杨虹,宫磊,徐晓军.生物催化氧化法脱除H_2S的试验研究[J].环境工程学报,2007,1(2):94-97. 被引量:6
  • 4范秀容 李广武 等.微生物学实验[M].北京:高等教育出版社,1988.235-239.
  • 5陈魁.应用概率统计[M].北京:清华大学出版社,2006.
  • 6DOLOWY K. A physical theory of cell-cell and cell-substratum interaction[M]//Curtis A S G, Pitts I D. Cell adhesion and mobility. Cambridge : Cambridge University Press, 1980: 39 - 63.
  • 7LIU Bo( 刘波 ). Study on degradation of sulfur-containing odors in hybrid deodorization bioreactor ( 复合生物脱臭瓜器去除硫系臭气的研究) [ D ]. Harbin : Harbin Institute of Technology, 2004.
  • 8BENJAMIN C E S, JOSEPH S D, THEODORE T T. A biofilter net-work model - importance of the pore structure and other large-scale hetorogenoities[J]. Chemical Engineering Science, 2001, 56: 475- 483.
  • 9NEMATI M, HARRISON S T L, HANSFORD G S, et al. Biological oxidation of ferrous sulphate by Thiobacillus ferrooxidans : a review on the kinetic aspects [ J ]. Biochemical Engineering Journal, 1998, 1 : 171 - 190.
  • 10LIU Tianqi(刘天齐), HUANG Xiaolin(黄小林), XING Qibo(邢其博). Technology handbook of three wastes processing engineering: wastegas (三废处理工程技术手册:废气卷) [M]. Beijing: Chemical Industry Press, 1999:446-447.

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