期刊文献+

凝固浴组成对NMMO法纤维素膜形貌的影响 被引量:14

Influence of Coagulation Bath on Morphology of Cellulose Membranes Prepared by NMMO Method
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摘要 为实现对分离用纤维素膜形貌的控制,采用NMMO法,分别以水、甲醇、乙醇和由它们配制的双组分溶液为凝固浴,制备了纤维素膜,观察了干膜的表面和断面形貌,测定了湿膜的孔结构参数,在对比基础上分析了干膜中微孔的形成过程与机制,探讨了纤维素结晶尺度与湿膜平均孔径的相关性和影响因素。研究表明,不同凝固浴制备出的纤维素膜在干态形貌上差别明显。纤维素膜的湿态孔隙率基本不受凝固浴组成影响,而干态下的致密区域在水溶胀后呈现多孔结构,对湿膜平均孔径影响很大。通过改变凝固浴组成,可分别或协同地调控纤维素膜的干态或湿态结构。 In order to realize the control on morphology of cellulose membrane used for separation, the cellulose membranes were prepared by NMMO method with using water, methanol, ethanol and their binary solution as coagulation bath. The morphology of surface and cross section of dry membrane were observed. The pore structure parameters of wet membrane were determined. By comparison, the process and mechanism of pore forming in dry membrane was suggested, and the relativity and influence factors of cellulose crystal size and average pore diameter in wet membrane was discussed. The results show that the morphology of dry membrane is varied with coagulation bath clearly, while the porosity of wet membrane is almost constant. The compact region in dry membrane can appear porous structure when swelling by water. These pores have virtual effect on the average pore diameter of wet membrane. Through changing the composition of coagulation bath, the microstructure of cellulose membrane at dry and wet environment can be adjusted separately or synergistically,
出处 《高校化学工程学报》 EI CAS CSCD 北大核心 2007年第3期398-403,共6页 Journal of Chemical Engineering of Chinese Universities
基金 国家自然科学基金资助项目(20406008)
关键词 纤维素膜 NMMO 凝固浴 形貌 cellulose membrane NMMO coagulation bath morphology
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参考文献18

  • 1Kuo Y N,Hong J.A new method for cellulose membrane fabrication and the determination of its characteristics[J].J Colloid Interface Sci,2005,285(1):232-238.
  • 2Makarand V R,Bhonde R R.Suitability of cellulose molecular dialysis membrane for bioartificial pancreas:In vitro b iocompatibility studies[J].J Biomed Mater Res,2001,54(3):436-444.
  • 3Abe Y,Mochizuki A.Hemodialysis membrane prepared from cellulose/N-methylmorpholine-N-oxide solution.II.Comparative studies on the permeation characteristics of membranes prepared from N-methylmorpholine-N-oxide and cuprammonium solutions[J].J Appl Polym Sci,2003,89(6):333-339.
  • 4张耀鹏,邵惠丽,沈新元,胡学超.NMMO工艺纤维素超滤膜的研究[J].河南师范大学学报(自然科学版),2000,28(4):47-51. 被引量:12
  • 5邵自强,王飞俊,鹿红岩,田文智,谭惠民.改性软木纤维素的NaOH水溶液体系成膜性研究[J].纤维素科学与技术,2002,10(2):8-11. 被引量:1
  • 6Maia E,Pérez S.Cellulose organic solvents (Ⅱ),the structure of N-methylmorpholine N-oxide 2.5 H2O[J].Acta Cryst,1982,B38(3):849-852.
  • 7张耀鹏,邵惠丽,沈新元,胡学超.NMMO法纤维素膜的结构与性能[J].膜科学与技术,2002,22(4):13-20. 被引量:20
  • 8张耀鹏,胡赛珠,邵惠丽,沈新元,胡学超.凝固浴条件对Lyocell膜表面结构和性能的影响[J].东华大学学报(自然科学版),2002,28(3):1-6. 被引量:5
  • 9吴江,曹义鸣,袁权.新型α-纤维素膜制备与性能研究[J].高分子学报,2002,12(4):520-524. 被引量:10
  • 10Jie X M,Cao Y M,Lin B et al.Gas permeation performance of cellulose hollow fiber membranes made from the cellulose/N-methylmorpholine-N-oxide/H2O system[J].J Appl Polym Sci,2004,91(3):1873-1880.

二级参考文献36

  • 1高以烜.膜分离技术基础[M].北京:科学出版社,1989.1-9.
  • 2杨光 张俐娜.再生纤维素/聚乙烯醇共混膜的研究.第一届全国膜和膜过程学术报告会文集[M].大连,1991.157-160.
  • 3Cheryan M, Rajagopalan N. Membrane processing of oily streams: wastewater treatment and waste reduction [J]. J Membr Sci, 1998, 151: 13-28.
  • 4Kong J, Li K. Oil removal from oil-in-water emulsions using PVDF membranes [J]. Sep Purif Technol, 1999, 16: 83-93.
  • 5Ma H, Bowman C N, Davis R H. Membrane fouling reduction by backpulsing and surface modification [J]. J Membr Sci, 2000, 173: 191-200.
  • 6Faibish R S, Cohen Y. Fouling and rejection behavior of ceramic and polymer-modified ceramic membranes for ultrafiltration of oil-in-water emulsions and microemulsions [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2001, 191: 27-40.
  • 7Tansel B, Regula J, Shalewitz R. Treatment of fuel oil and crude oil contaminated waters by ultrafiltration membranes [J]. Desalination, 1995, 102: 301-311.
  • 8Shekar B C, Veeravazhuthi V, Sakthivel S, et al. Growth, structure, dielectric and AC conduction properties of solution grown PVA films [J]. Thin Solid Films, 1999, 348: 122-129.
  • 9江明,高分子合金的物理化学,1988年
  • 10Kang Y S,J Membr Sci,1991年,60卷,219页

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