期刊文献+

膜片式微孔曝气生物反应器的实验

Experimental study on membrance aeration bioreactor
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摘要 为了适应在高营养、高密度、高溶氧、高粘度、低剪切条件下培养微生物和动植物细胞或组织的需要,研制了新型的膜片式曝气生物反应器。其关键部件是膜片微孔曝气分布器。对反应器进行了流动特性、压降、气含率等方面的研究,选取了最佳的膜片微孔曝气分布器。实验结果表明:这种生物反应器产生的气泡均匀,供氧效率高,混合性能好,且对介质无机械的剪切破坏作用,与机械搅拌生物反应器相比,可节约1/2的电能,可被广泛应用于中小型反应器。 In order to culture the cell of the microbe and flora or fauna, under the environment of rich nutrition, high density, rich dissolved oxygen, and high viscosity, a new membrane aeration bioreactor is developed. The key part is the distribution of membrane aeration bioreactor. The flow characteristic, pressure reduction, air-contained rate for the reactor which assembled many kinds of air distribution are studied, the best air distribution is chosen. The result indicate that this kind of membrane bioreactors can generate homogeneous air bubble, have high rate of oxygen supply, have good nature of blending and have no mechanical shear damage on mediator. Compared to mechanical string membrane bioreactor, the reactor can save about half of electric energy and can be widely used in medium and small-sized reactor.
出处 《排灌机械》 2007年第2期61-64,共4页 Drainage and Irrigation Machinery
基金 江苏省高校自然科学基金项目(02KJD470002) 江苏大学高级人才基金项目(04JDG013)
关键词 生物反应器 膜片 混合 气含率 节能 bioreactor membrane admixture air rate energy save
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  • 1张文会,高孔荣.内循环气升式发酵罐的特性及其用于谷氨酸发酵的研究[J].生物工程学报,1993,9(2):170-174. 被引量:8
  • 2杨敏官,刘栋,贾卫东,王春林.离心泵叶轮中固液两相流动的数值模拟[J].水泵技术,2005(4):31-34. 被引量:23
  • 3王福军,黎耀军,王文娥,丛国辉,王利萍.水泵CFD应用中的若干问题与思考[J].排灌机械,2005,23(5):1-10. 被引量:95
  • 4程效锐,齐学义,冯俊豪.颗粒浓度对双流道污水泵叶轮流场影响的数值模拟[J].水泵技术,2006(1):21-23. 被引量:3
  • 5Chang-Yong Shin, et al. Numerical Analysis for the Growth of GaN Layer in MOCVD Reactor [J]. Crystal Growth, 2003:301-312.
  • 6Won Young Chung, et al. Modelling of Cu thin film growth by MOCVD process in a vertical reactor[J]. Crystal Growth, 1997:691-697.
  • 7Durst F, et al. A Multigrid Solver for Fluid Flow and Mass Transfer Coupled with Grey body Surface Radiation for the Numerical Simulation of Chemical Vapor Deposition Processes [J].Crystal Growth, 1995, 146:202~208.
  • 8[1]Livingston, Zhang. Hydrodynamic behaviour of airlift reactors[J]. Chemical Engineering Science, 1993, 48: 1641-1654.
  • 9[2]Carla Freitas, Maria Fialova, Jindrich Zahradnik et al. Hydrodynamic model for three-phase internal- and external-loop airlift reactors[J]. Chemical Engineering Science, 1999, 54: 5253-5258.
  • 10[3]Kawase Y. Liquid-phase mixing in internal-loop airlift bioreactors[J]. Chemical technology and biotechnology, 1994, 61: 49-55.

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