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滴流床反应器处理有机废水的研究进展 被引量:1

Progress in Research on Treatment of Organic Wastewater Using Trickle-Bed Reactor
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摘要 介绍了滴流床反应器催化湿式氧化处理有机废水的发展概况和工艺特点,对滴流床反应器的主要影响因素,反应动力学和反应器数学模型等方面的研究现状进行了综述。
出处 《工业用水与废水》 CAS 2003年第6期1-4,共4页 Industrial Water & Wastewater
基金 国家863计划资助(2002AA601260)
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  • 1[1]Pintar A, Levec J. Catalytic oxidation of aqueous p-chlorophenol and p-nitrophenol solutions [J]. Chemical Engineer Science,1994, 49(24A): 4391-4407.
  • 2[2]Christophe J, Besson M, Gallezot P. et al. Catalytic wet air oxidation on a Ru/TiO2 catalyst in a trickle-bed reactor[J ]. Ind Eng ChemEngSci, 1999, 38(4): 1310-1315.
  • 3[3]C Miró, A Alejandre, A Fortuny, et al. Aqueous phase catalytic oxidation of phenol in a trickle bed reactor[J]. Wat Res, 1999,33(4): 1005-1013.
  • 4[4]A Fortuny, C Bengoa, J Castells, et al. Water pollution abatement by catalytic wet air oxidation in a trickle bed reactor [J].CatalToday, 1999, 53(1): 107-114.
  • 5[5]A Fortuny, C Bengoa, J Font, et al. Bimetallic catalysts for continuous catalytic wet air oxidation of phenol [J]. Journal of HazadousMaterial B, 1999, 64(2): 181-193.
  • 6[6]Pintar A, Levec J. Catalytic Liquid-Phase Oxidation of Phenol Aqueous Solutions A Kinetic Investigation [J]. Ind Eng Chem Res, 1994, 33(12): 3070-3077.
  • 7[7]Henry H C, Gilbert J B. Scale up of Pilot Plant for Catalytic Hydroprocessin [J]. Ind Eng Chem Proc Des, 1973, 12(3): 328334.
  • 8[8]Mears D E. The Role of Axial Dispersion in Trickle Flow Labora tory Reactor[J]. Chem Eng Sci, 1974, 26(8): 1361-1366.
  • 9[9]Pintar A, Bercic G, Levec L. Catalytic Liquid-phase oxidation of aqueous phenol solutions in a trickle-bed reactor [J]. Chem EngngSci, 1997, 52(21): 4143-4153.

同被引文献19

  • 1张文辉,戴和武,谢可玉.煤气生物甲烷化技术研究进展[J].煤炭转化,1995,18(3):36-42. 被引量:4
  • 2L Daniels, G Fuchs, R K Thauer,et al. Carbon Monoxide Oxidation by Methanogenic Bacteria[J].Journal of Bacteriology, 1977, 132(1):118-126.
  • 3Lee Lynd, R Kerby, J G Zeikus. Carbon Monoxide Metabolism of the Methylotrophic Acidogen[J].Journal of Bacteriology , 1982, 149(1):255-263.
  • 4Uffen R L. Metabolism of carbon monoxide by Rhodopseudomonas gelatinosa: cell growth and properties of the oxidation system.[J]. Bacteriol.,1983,155,:956-965.
  • 5Mo rsdorf G, Frunzke K, Gadkari D, Meyer O. Microbial growth on carbon monoxide.[J] Biodegradation. 1992, 3:61-82.
  • 6Svetlichny V A, Sokolova T G, Kostrikina N A, Lysenko A M.A new thermophilic anaerobic carboxydotrophic bacterium Carboxydothermus restrictus sp. nov[J].Microbiology (English transl. of Mikrobiologiya),1994, 3,:523-528.
  • 7Jung G Y,Kim J R,Jung H O,Park J Y, Park S A, new chemoheterotrophic bacterium catalyzing water-gas shift reaction.[J].Biotechnol Lett, 1999, 21:869-873.
  • 8Bredwell M D, Srivastava P, Worden R M. Reactor design issues for synthesis-gas fermentations[J].Biotechnol Prog,1999, 15:834-844.
  • 9Svetlitchnyi V, Peschel C, Acker G, Meyer O. Two membrane-associated Ni-Fe-S-carbon monoxide dehydrogenases from the anaerobic carbon-monoxide-utilizing eubacteriumCarboxydothermus hydrogenoformans[J]. Bacteriol ,2001,183 :5134-5144.
  • 10Sipma J, Lens PNL, Stams AJM, Lettinga G Carbon monoxide conversion by anaerobic bioreactor sludges[J].FEMS Microbiol Ecol ,2003, 44:271-277.

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