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Preparation and Characterization of Poly (L-lactic acid) (PLLA) Microporous Membrane for Dialysis
Authors: Ai-Lin Gao1,2,Fu Liu*1,Lin-Xin Xue*1
Units: 1、Ningbo Institute of Material Technology & Engineering, Chinese Academy of Sciences, 519 Zhuangshi Road, Ningbo 315201, China; 2、Ningbo University, 818 Fenghua road, Ningbo 315211, China
KeyWords: PLLA membrane; immersion precipitation; bio-compatibility; dialysis membrane
ClassificationCode:TQ028.8
year,volume(issue):pagination: 2013,33(4):28-34

Abstract:
 Bio-based Poly (l-lactic acid) (PLLA) for dialysis was prepared via immersion precipitation method in this work. The influences of the solvent including N-methyl pyrrolidone (NMP), N, N-dimethyl acetamide (DMAc) and 1, 4 – dioxane on the micro-structures of PLLA membrane were investigated. The influences of the pore former including Polyethylene glycol (PEG6000) and polyvinyl Pyrrolidone (PVP) on membrane morphologies, pore size, pure water flux and contact angle were investigated. Furthermore, the influences of Polyethylene glycol with different molecular weight (e.g. PEG600, PEG6000and PEG10000) on membrane morphologies, pore size, pure water flux were also investigated. SEM pictures showed that both NMP and DMAc could produce finger-like pores for PLLA membrane, while 1, 4–dioxane could cause the formation of cellular pores. PVP-K30 can make a more porous surface than PEG6000. PEG with different molecular weight will affect both the pore size and the surface layer thickness of PLLA film. The retention of PLLA membrane to urea, lysozyme and BSA was studied to simulate the dialysis process. All results indicated that bio-based PLLA membrane is promising to be the next generation of dialysis membrane with good bio-compatibility.

Funds:
国家自然科学基金(51273211),国家高技术研究发展计划(863计划,2012AA03A605),浙江省公益性技术应用研究计划项目(2011C31002)。

AuthorIntro:
高爱林(1989-),女,山东郯城人,硕士生,从事膜材料制备及应用研究。通讯联系人*,Email: fu.liu@nimte.ac.cn, xuelx@nimte.ac.cn,

Reference:
[1] Chakrabarty, B. Ghoshal, A. K. Purkait, M. K. Effect of molecular weight of PEG on membrane morphology and transport properties. Journal of Membrane Science.2008 (309):209-221.
[2] Ma Yuxin, Shi Fengmei, Ma Ju ,Wu Miaonan ,Zhang Jun, Gao Congjie. Effect of PEG additive on the morphology and performance of polysulfone ultrafiltration membranes. Desalination. 2011(272):51-58.
[3] Ani Idris , Lee Kuan Yet. The effect of different molecular weight PEG additives on cellulose acetate asymmetric dialysis membrane performance. Journal of Membrane Science.2006(280):920-927.
[4] Susan Hanft.Ultrafiltration memnranes:technologies and the U.S.market.[R].MST044C.BBC Research,2010.
[5] Ferraz.N, D.Carlsson, O. Hong, J. Larsson. Hemocompatibility and ion exchange capability of nanocellulose polypyrrole membranes intended for blood purification. Journal of the Royal Society Interface. 2012(9): 1943-1955.
[6] Li Lu ,Cheng Chong Xiang, TaoTang,Min Zhao. Modification of polyethersulfone hemodialysis membrane by blending citric acid grafted polyurethane and its anticoagulant activity. Journal of Membrane Science.2012(405-406):261-274.
[7] Haitao Wang, Tian Yu, Chenyu Zhao, Qiyun Du. Improvement of hydrophilicity and blood compatibility on polyethersulfone membrane by adding polyvinylpyrrolidone。Fibers and Polymers.2009(10):1-5.
[8] 卞书森,张福港,李晓东.血液透析膜的生物相容性研究进展.中国血液净化.2006(5):205-207.
[9] 张国栋,杨纪元,冯新德.聚乳酸的研究进展.化学进展.2000(12):89-100.
[10] T.Tanaka, D.R.Loyd. Formation of PLA microfiltration membranes via themally induced phase separation, J.Membr. Sci. 238(2004): 65-73.
[11] T.Tanaka, T.Tsuchiya, H.Formation of biodegradable polyesters membranes via thermally induced phase separation, J.Chem.Eng.Jpn. 39(2006)144-153.
[12] 贾悦,吕晓龙,武春瑞等.聚醚砜中空纤维血液透析膜的制备与透析性能初步评价.生物医学工程杂志. 2010(27):91-96.
[13] 徐又一,徐志康.高分子膜材料.化学工业出版社,北京,2005.
[14] Seong Hyun Yoo, Jong Hak Kim, Jae Young Jho, Influence of the addition of PVP on the morphology of asymmetric polyimide phase inversion membranes: effect of PVP molecular weight. Journal of Membrane Science. 2004 (236):203-207
[15] Fu Liu, N. Awanis Hashim, Yutie Liu,etc. Progress in the production and modification of PVDF membranes. Journal of Membrane Science. 2011(375):1-27.
[16] Zereshki. S,Figoli. A. Madaeni, S. S.Simone ect. Poly(lactic acid)/poly(vinyl pyrrolidone) blendmembranes:  Effect of membrane composition on pervaporation separation of ethanol/cyclohexane mixture. Journal of Membrane Science. 2010(362):105-112.
[17] Sunee.Wongchitphimon, Rong.Wang, Ratana Jiraratananon etc.  Effect of polyethylene glycol (PEG) as an additive on the fabrication of polyvinylidene fluoride-co-hexafluropropylene (PVDF-HFP) asymmetric microporous hollow fiber membranes. Journal of Membrane Science. 2011(369): 329-338.
[18] 徐炜,徐又一,朱宝库. 聚偏氟乙烯(PVDF)平板膜的制备工艺.2003.

 

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