欢迎登录材料期刊网

材料期刊网

高级检索

通过浸没沉淀相转化法制备生物基聚乳酸(PLLA)微孔膜,并考察溶剂种类和致孔剂种类及致孔剂分子量对微孔膜结构和性能的影响.分别考察N-甲基吡咯烷酮(NMP)、N,N-二甲基乙酰胺(DMAc)和1,4-二氧六环(DO)作为溶剂对PLLA膜微孔结构的影响,研究用聚乙二醇(PEG6000)和聚乙烯基吡咯烷酮(PVP-K30)作为致孔剂对PLLA膜微孔结构、平均孔径、水通量及接触角的影响;不同分子量的致孔剂PEG(600、6000、10000)对PLLA膜微孔结构、平均孔径及水通量的影响.通过扫描电镜照片发现,NMP和DMAc作为溶剂可得到指状孔,而DO作为溶剂得到胞状孔,PEG和PVP-K30作为致孔剂均可促进PLLA膜大孔的形成,PVP-K30可使PLLA膜表面更为多孔,不同分子量的PEG作为致孔剂会同时影响PLLA膜的孔径和皮层厚度.通过对制备的PLLA微孔膜的水通量及尿素、溶菌酶和牛血清蛋白的透过性能分析表明聚乳酸膜具有较好的溶质选择透过性,有望成为具有良好生物相容性和透析性能的新一代血液透析膜材料.

参考文献

[1] Chakrabarty B;Ghoshal AK;Purkait MK .Effect of molecular weight of PEG on membrane morphology and transport properties[J].Journal of Membrane Science,2008(1/2):209-221.
[2] Yuxin Ma;Fengmei Shi;Jun Ma .Effect of PEG additive on the morphology and performance of polysulfone ultrafiltration membranes[J].Desalination: The International Journal on the Science and Technology of Desalting and Water Purification,2011(1/3):51-58.
[3] Idris A;Yet LK .The effect of different molecular weight PEG additives on cellulose acetate asymmetric dialysis membrane performance[J].Journal of Membrane Science,2006(1/2):920-927.
[4] Susan Hanft .Ultrafiltration memnranes:technologies and the U S market[R].MST044C.BBC Research,2010.
[5] Ferraz N;Carlsson D;Hong O et al.Hemocompatibility and ion exchange capability of nanocellulose polypyrrole membranes intended for blood purification[J].J Royal Society Interf,2012,9:1943-1955.
[6] Lu Li;Xiang Chengchong;Tang Tao et al.Modification of polyethersulfone hemodialysis membrane by blending citric acid grafted polyurethane and its anticoagulant activity[J].Journal of Membrane Science,2012,405-406:261-274.
[7] Haitao Wang;Tian Yu;Chenyu Zhao .Improvement of Hydrophilicity and Blood Compatibility on Polyethersulfone Membrane by Adding Polyvinylpyrrolidone[J].Fibers and Polymers,2009(1):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[J].中国血液净化,2006(04):205-207.
[9] 张国栋,杨纪元,冯新德,顾忠伟.聚乳酸的研究进展[J].化学进展,2000(01):89-102.
[10] Tanaka T;Loyd D R .Formation of PLA microfiltration membranes via themally induced phase separation[J].Journal of Membrane Science,2004,238:65-73.
[11] Takaaki TANAKA;Takashi TSUCHIYA;HidemaTAKAHASHl;Masayuki TANIGUCHI;Hitomi OHARA .Formation of Biodegradable Polyesters Membranes via Thermally Induced Phase Separation[J].Journal of Chemical Engineering of Japan,2006(2):144-153.
[12] 贾悦,吕晓龙,武春瑞,夏泽坤,王献德.聚醚砜中空纤维血液透析膜的制备与透析性能初步评价[J].生物医学工程学杂志,2010(01):91-96.
[13] 徐又一;徐志康.高分子膜材料[M].北京:化学工业出版社,2005
[14] Yoo SH;Kim JH;Jho JY;Won J;Kang YS .Influence of the addition of PVP on the morphology of asymmetric polyimide phase inversion membranes: effect of PVP molecular weight[J].Journal of Membrane Science,2004(1):203-207.
[15] Liu Fu;Hashim N A;Liu Y et al.Progress in the production and modification of PVDF membranes[J].Journal of Membrane Science,2011,375:1-27.
[16] Zereshki S;Figoli A;Madaeni S S et al.Poly(lactic acid)/poly(vinyl pyrrolidone) blendmembranes:Effectof membrane composition on pervaporation separation of ethanol/cyclohexane mixture[J].Journal of Membrane Science,2010,362:105-112.
[17] Wongchitphimon S;Wang R;Jiraratananon R et al.Effect of polyethylene glycol (PEG) as an additive on the fabrication of polyvinylidene fluoride-co-hexafluropropylene (PVDF-HFP) asymmetric microporous hollow fiber membranes[J].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[D].杭州:浙江大学,2003.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%