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综述了国内外计算流体力学(Computational Fluid Dynamics,CFD)在膜生物反应器(Membrane Bioreactor,MBR)研究中的应用进展,介绍了与活性污泥模型(Activated sludgemodel,ASM)相结合的ASM—CFD模型在MBR研究中的应用状况.曝气优化,膜组件、膜单元及生物单元结构的优化是目前基于CFD的MBR模拟研究重点.国外CFD模拟研究较早,模拟规模已高达4 800m3/d.与之相比,我国开展MBR的CFD模拟研究起步较晚,目前仍处在小试规模的模拟阶段.ASM— CFD模拟已在常规活性污泥法污水处理研究中得到了成功应用,预期其在MBR的研究、设计与应用中有望成为一个新热点和方向.

参考文献

[1] 杨文静,樊耀波,徐国良,袁栋栋,于艳.膜生物反应器操作条件对EPS含量及膜污染的影响[J].膜科学与技术,2010(06):41-48.
[2] Judd S;Judd C.The MBR Book—Principles and Applications of Membrane Bioreactors for Water and Wastewater Treatment[M].UK:Elsevier,2011
[3] Recent Advances In Membrane Bioreactors (mbrs): Membrane Fouling And Membrane Material[J].Water research: A journal of the international water association,2009(6):p.1489-1512.
[4] 张德良.计算流体力学教程[M].北京:高等教育出版社,2010:19-34.
[5] R.Ghidossi;D.Veyret;P.Moulin .Computational fluid dynamics applied to membranes:State of the art and opportunities[J].Chemical Engineering and Processing,2006(6):437-454.
[6] S.J.Judd;P.Le-Clech;T.Taha;Z.F.Cui .Theoretical and experimental representation of a submerged membrane bio-reactor system[J].Membrane Technology: An International Newsletter,2001(135):4-9.
[7] Saalbach J;Hunze M .Flow structures in MBR-tanks[J].Water Science and Technology,2008(5):699-705.
[8] Kang C W;Hua J S;Lou J et al.Bridging the gap between membrane bio-reactor(MBR)pilot and plant studies[J].Journal of Membrane Science,2008,325(02):861-871.
[9] Liu N Y;Zhang Q D;Chin G L et al.Experimental investigation of hydrodynamic behavior in a real membrane bio- reactor unit[J].Journal of Membrane Science,2010,353(1/2):122-134.
[10] M. Brannock;G. Leslie;Y. Wang .Optimising mixing and nutrient removal in membrane bioreactors: CFD modelling and experimental validation[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2010(2):815-818.
[11] M. Brannock;Y. Wang;G. Leslie .Mixing characterisation of full-scale membrane bioreactors: CFD modelling with experimental validation[J].Water research: A journal of the international water association,2010(10):p.3181.
[12] N.Ratkovich;C.C.V. Chan;P.R. Berube;I. Nopens .Experimental study and CFD modelling of a two-phase slug flow for an airlift tubular membrane[J].Chemical Engineering Science,2009(16):3576-3584.
[13] E.Nguyen Cong Duc C L.CFD applied on MBR system[A].Berlin,Germany,2007:48-53.
[14] 于艳,樊耀波,徐国良,王琦,杨文静.计算流体力学在膜技术及膜生物反应器研究中的应用[J].膜科学与技术,2011(01):105-112.
[15] 陈福泰,范正虹,黄霞.膜生物反应器在全球的市场现状与工程应用[J].中国给水排水,2008(08):14-18.
[16] 吴宗义,吴鑫.膜生物反应器的工程应用进展[J].山西建筑,2009(18):158-159.
[17] M.W.D. Brannock;Heleen De Wever;Y. Wang .Computational fluid dynamics simulations of MBRs: Inside submerged versus outside submerged membranes[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2009(1/3):244-251.
[18] H. Prieske;A. Drews;M. Kraume .Prediction of the circulation velocity in a membrane bioreactor[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2008(1/3):219-226.
[19] Amirhossein Khalili-Garakani;Mohammad Reza Mehrnia;Navid Mostoufi;Mohammad Hossein Sarrafzadeh .Analyze and control fouling in an airlift membrane bioreactor: CFD simulation and experimental studies[J].Process biochemistry,2011(5):1138-1145.
[20] Ndinisa, NV;Fane, AG;Wiley, DE;Fletcher, DF .Fouling control in a submerged flat sheet membrane system: Part II - Two-Phase flow characterization and CFD simulations[J].Separation Science and Technology,2006(7):1411-1445.
[21] 任全文 .一体式膜-生物反应器结构优化及水动力学的研究[D].西安建筑科技大学,2006.
[22] 韩杰,朱彤,黄永刚,谢元华.浸没板式膜生物反应器中流体运动的数值模拟[J].化学与生物工程,2008(11):44-47.
[23] 李辉 .曝气位置对一体式膜生物反应器操作性能的影响[D].内蒙古工业大学,2009.
[24] 李金,王泽.浸没式超滤膜过滤器内流场的数值模拟[J].三峡大学学报(自然科学版),2010(03):14-17.
[25] 于艳,樊耀波,徐国良,王琦.计算流体力学对膜生物反应器水力学特征的模拟研究[J].膜科学与技术,2011(04):9-16.
[26] David Delaunay;Murielle Rabiller-Baudry;Jose M.Gozalvez-Zafrilla .Mapping of protein fouling by FTIR-ATR as experimental tool to study membrane fouling and fluid velocity profile in various geometries and validation by CFD simulation[J].Chemical Engineering and Processing,2008(7):1106-1117.
[27] Madaeni S;Rahimi M;Abolhasani M .Investigation of cake deposition on various parts of the surface of micmfiltration membrane due to fouling[J].Korean Journal of Chemical Engineering,2010,27(01):206-213.
[28] M. Rahimi;S.S. Madaeni;M. Abolhasani .CFD and experimental studies of fouling of a microfiltration membrane[J].Chemical Engineering and Processing,2009(9):1405-1413.
[29] Chang I S;Le Clech P;Jefferson B et al.Membrane fouling in membrane bioreactors for wastewater treatment[J].Journal of Environmental Engineering,2002,128(11):1018.
[30] Ratkovich N R;Nopens I.Modelling hydrodynamics in MBR systems using computational fluid dynamics[A].,2008
[31] Ratkovich;Nicolas Rios;Nopens I.Hydrodynamic CFD Simulation of a Two-Phase Flow in a Single Tube of an Ultrafication Membrane for a SideStream Membrane Bioreactor[A].Berlin,Germany,2007
[32] Taha Taha;Z.F. Cui .CFD modelling of gas-sparged ultrafiltration in tubular membranes[J].Journal of Membrane Science,2002(1):13-27.
[33] Laure Martinelli;Christelle Guigui;Alain Line .Characterisation of hydrodynamics induced by air injection related to membrane fouling behaviour[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2010(2):587-591.
[34] Wang Y;Brannock M;Leslie G .Membrane bioreactors.overview of the effects of module geometry on mixing energy[J].Asia-Pacific Journal of Chemical Engineering,2009,4(03):322-333.
[35] Ratkovich N;Hunze M;Futselaar H.Use of CFD to model and optimize the hydrodynamics of an airlift MBR side-stream module[J].Proceedings of the Water Environment Federation,2009(14):2812-2818.
[36] Drews A;Prieske H;Kraume M .Optimierung der blasen-und zirkulationsstr mung in membranbelebung-sreaktoren[J].Chemie Ingenieur Technik,2008,80(12):1795-1801.
[37] Ndinisa NV;Wiley DE;Fletcher DF .Computational fluid dynamics simulations of Taylor bubbles in tubular membranes - Model validation and application to Laminar flow systems[J].Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers,2005(A1):40-49.
[38] B?hm, L.;Drews, A.;Prieske, H.;Bérubé, P.R.;Kraume, M..The importance of fluid dynamics for MBR fouling mitigation[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2012:50-61.
[39] Khalili A;Mehmia M .Flow characteristics in an airlift membrane bioreactor[J].Chemical Product and Process Modeling,2009,4(05):18.
[40] Günther J;Schmitz P;Albasi C et al.A numerical approach to study the impact of packing density on fluid flow distribution in hollow fiber module[J].Journal of Membrane Science,2010,348(1/2):277-286.
[41] Yujun Wang;Fei Chen;Yan Wang;Guangsheng Luo;Youyuan Dai .Effect of random packing on shell-side flow and mass transfer in hollow fiber module described by normal distribution function[J].Journal of Membrane Science,2003(1/2):81-93.
[42] Braak E;Alliet M;Schetrite S et al.Aeration and hydrodynamics in submerged membrane bioreactors[J].Journal of Membrane Science,2011,379(1-2):1-18.
[43] Buetehorn S;Volmering D;Vossenkaul K et al.CFD simulation of single-and multi-phase flows through submerged membrane units with irregular fiber arrangement[J].Journal of Membrane Science,2011,384(12):184-197.
[44] E Nguyen Cong Due C L;Lesjean B;Essemiani K.CFD applied to Membrane Bioreactor Upstream R&D Industrial application[A].Ghent,Belgium,2008:65-71.
[45] Liu W;Jordan E;Kippax V et al.Using computational fluid dynamics(CFD)and particle image velocimetry(PIV)to characterize air and water two phase plug flow membrane clean system[J].Proceedings of the Water Environment Federation,2009,2009(14):2798-2811.
[46] Anja Drews;Helmut Prieske;Eva-Lena Meyer .Advantageous and detrimental effects of air sparging in membrane filtration: Bubble movement, exerted shear and particle classification[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2010(3):1083-1086.
[47] Li T R.Evaluation of influence of bubble size by CFDon shear stress working on flat-sheet membrane surface in MBRs[A].,2009
[48] Nguyen Cong Duc E;Fournier L;Levecq C et al.Local hydrodynamic investigation of the aeration in a submerged hollow fibre membranes cassette[J].Journal of Membrane Science,2008,321(02):264-271.
[49] Naessens, W.;Maere, T.;Ratkovich, N.;Vedantam, S.;Nopens, I..Critical review of membrane bioreactor models - Part 2: Hydrodynamic and integrated models[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2012:107-118.
[50] Gujer W .Activated sludge modelling: past, present and future[J].Water Science and Technology,2006(3):111-119.
[51] Brannock M W D .Computational fluid dynamics tools for the design of mixed anoxic wastewater treatment vessels[D].Brisbane,Queensland:The University of Queensland,2003.
[52] Le Moullec, Y.;Gentric, C.;Potier, O.;Leclerc, J.P. .CFD simulation of the hydrodynamics and reactions in an activated sludge channel reactor of wastewater treatment[J].Chemical Engineering Science,2010(1):492-498.
[53] Y. Le Moullec;O. Potier;C. Gentric;J.P. Leclerc .Activated sludge pilot plant: Comparison between experimental and predicted concentration profiles using three different modelling approaches[J].Water research: A journal of the international water association,2011(10):3085-3097.
[54] Glover GC;Printemps C;Essemiani K;Meinhold J .Modelling of wastewater treatment plants - how far shall we go with sophisticated modelling tools?[J].Water Science and Technology,2006(3):79-89.
[55] Helen X. Littleton;Glen T. Daigger;Peter F. Strom .Application of Computational Fluid Dynamics to Closed-Loop Bioreactors: Ⅱ. Simulation of Biological Phosphorus Removal Using Computational Fluid Dynamics[J].Water Environment Research,2007(6):613-624.
[56] Piotr Zima;Jacek Makinia;Marek Swinarski .Combining Computational Fluid Dynamics with a Biokinetic Model for Predicting Ammonia and Phosphate Behavior in Aeration Tanks[J].Water Environment Research,2009(11):2353-2362.
[57] Oda T;Yano- T;Niboshi- Y .Development and exploitation of a multipurpose CFD tool for optimisation of microbial reaction and sludge flow[J].Water Science and Technology,2006(3):101-110.
[58] Wang Y .Evaluation of membrane bioreactor mixing performance via computational fluid dynamics modelling[D].Sydney:The University of New South Wales,2010.
[59] 刘大伟,沈文浩.活性污泥法污水处理基准仿真模型的开发及进展[J].中国给水排水,2007(20):20-24.
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