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Effects of critical flux operation on Ultrafiltration process of Huanglian
Authors: LIU Hongbo, LI Bo,GUO Liwei
Units: Nanjing university of Chinese medicine,Key Laboratory of Separation Engineering for Chinese Medicine Compound,Nanjing 210029
KeyWords: Chinese herb extractions;Ultrafiltration;Sub-critical flux
ClassificationCode:TQ028.8
year,volume(issue):pagination: 2013,33(3):81-87

Abstract:
The concept of critical flux is introduced into the complex system of Chinese herb extractions.The critical flux of the traditional Chinese medicine compound Huanglian jiedu decoction is determined in the hollow fiber membrane ultrafiltration process and the sub-critical flux operation status is studied.The results show that under the sub-critical flux operation when the pressure is 0.04 MPa and the cross-flux equals 0.15 m/s,the stable permeate flux is only reduced by 5.5 % compared to the initial flux.However, under the ultra-critical flux operation when the pressure is 0.07 MPa and 0.10 MPa,the values are 32.1 % and 42.2 % respectively.The relative stability fouling resistance under the pressure of 0.04 MPa、0.07 MPa and 0.10 MPa is 3.0、7.5 and 15.8 respectively.Sub-critical flux operation of great significance to optimize the operating conditions to reduce membrane fouling ,saving production costs ,and guide the actual refining production process of Chinese herb extractions using membrane filtration technology.

Funds:
国家自然科学基金(30572374,30873449,30973950);中药制药过程新技术国家重点实验室开放基金资助(SKL2010Z0101)

AuthorIntro:
刘红波(1987-),男,河南周口,硕士生在读,从事以膜技术为主体的中药复方分离工程研究。E-mail:1304532099@qq.com 参考文献

Reference:
[1]董 强,刘立敏,林淑钦,等.中药复方水提液澄清过程中陶瓷膜污染的防治研究[J].膜科学与技术,2004,24(6):34-37.
[2]乐 康,付廷明,郭立玮.中药水提液膜污染问题防治方法研究进展[J].现代中药研究与实践,2010,24(2):74-77.
[3]Field R W, Wu D,Howell J A ,et al.Critical flux concept for microfiltration Fouling[J]. Journal of Membrane Science,1995,100: 259-272.
[4] Neal P R, Li H, Fane A G,et al.The effect of filament orientation    on critical flux and particle deposition in spacer-filled channels[J].J Membr Sci,2003,214(2):165-178.
[5]Defrance L,Jaffrin M Y.Comparison between filtrationsat fixed transmembrane pressure and fixed permeate flux:application to a membrane bioreactor used for wastewater treatment[J]. J Membr Sci,1999,152(2):203-210.
[6] Bacchin P,Aimar P,Sanchez V. Model for colloidal fouling of membranes [J]. Aiche Journal,1995,41:368-377.
[7] Howell J A.Sub-critical flux operation of microfiltration[J].Journal of Membrane Science,1995,107: 165-171.
[8]陈丽静,孙秀梅,张兆旺,等.3种方法制备的黄连解毒汤提取液指纹图谱比较[J].中草药,2012,43(3):487-491.
[9]汪 涛.HPLC法同时测定黄连解毒汤中3种有效成分的含量[J].中国药房,2009,20(18):1410-1411.
[10]黄春燕,姜莉莉,王玮,等.RP-HPLC同时测定黄连解毒汤7种活性成分[J].浙江预防医学,2011,23(11):15-19.
[11]Mikulášek P,Doleˇcek P,šmidová D,et al.  Crossflow    microfiltration of mineral dispersions using ceramic membranes[J]. Desalination,2004,163 (1–3): 333–343.
[12]Seidel A,Elimelech M.  Coupling between chemical and physical interactions in natural organic matter (NOM) fouling of nanofiltration membranes: implications for fouling control[J]. Journal of Membrane Science ,2002,203(1-2):245-255.
[13] Gander M,Jefferson B,Judd S.  Aerobic MBRs for domestic wastewater treatment: a review with cost considerations[J]. Separation and Purification Technology,2002,18:119-130.
[14] Bacchin P,Aimar P,Field R W .Critical and sustainable fluxes: theory,
Experiments and applications[J].Journal of Membrane Science,2006,
281(1-2):42-69.

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