期刊文献+

陶瓷膜分离净化硫氰酸钠工艺研究 被引量:1

Separation and purification of sodium thiocyanate by ceramic membrane filtration
在线阅读 下载PDF
导出
摘要 采用陶瓷膜分离净化湿法腈纶溶剂硫氰酸钠物料,分析了膜通量随运行时间的衰减变化趋势及浓缩倍数与膜通量衰减的关系,确定了恢复膜通量的方法,比较了不同膜管的分离效果和分离特性。结果表明:陶瓷膜能有效截留硫氰酸钠物料中的杂质,水不溶物去除率大于75%;膜通量都随运行时间的延长而衰减,当平均膜通量低于设计膜通量时,可采用热纯水进行洗脱,使膜通量恢复;当热纯水无法使膜通量恢复,可采用化学方法或更换膜管;不同膜层厚度的膜管对膜通量影响不大,但厚层膜管的分离除杂效果好。 Sodium thiocyanate as a solvent for wet-spun acrylic fiber was separated and purified by ceramic membrane technique.The attenuation trend of membrane flux with operation time and the relationship between concentration multiple and membrane flux attenuation were analyzed.The membrane flux recovery method was decided.The separation effect and characteristics of different membrane tubes were compared.The results showed that ceramic membrane was able to effectively clean the impurities in sodium thiocyanate and the removal rate of water insoluble substance was above 75%;the membrane flux was decreased with the increase of operation time,and the membrane flux can be recovered by washing with pure hot water when the average membrane flux was lower than the designed value;the membrane tubes should be replaced or treated by some chemical techniques when the membrane flux can not be recovered by pure hot water washing;the membrane thickness did not have great effect on membrane flux,but the thicker membrane provided better impurity cleaning effect.
作者 顾文兰
出处 《合成纤维工业》 CAS CSCD 北大核心 2012年第5期1-5,共5页 China Synthetic Fiber Industry
基金 中国石化集团公司研究项目(211063) 国家基础研究发展项目(2011CB605700)
关键词 硫氰酸钠 陶瓷膜管 膜通量 分离 除杂 sodium thiocyanate ceramic membrane tube membrane flux separation impurity cleaning
作者简介 顾文兰(1969-),女,高级工程师,主要从事腈纶新产品开发工作。E—mail:guwl.shsh@sinopec.com。
  • 相关文献

参考文献3

二级参考文献16

共引文献19

同被引文献30

  • 1季放,苏宝根,任其龙.凝胶色谱法净化硫氰酸钠溶剂的基础研究[J].化工时刊,2007,21(7):13-15. 被引量:4
  • 2国家环境保护局.水和废水监测分析方法[M].北京:中国环境科学出版社,1997..
  • 3顾文兰.活性炭在硫氰酸钠溶剂净化工艺中的应用[J].合成纤维,2007,36(6):38-43. 被引量:2
  • 4孙寿康.离子交换法净化硫氰酸钠技术[J].合成纤维工业,1988(1):29.
  • 5HOPFER U, CROWE T D, TANDLER B. Purification of brush border membrane by thiocyanate treatment [ J ]. Analytical Biochemistry ,1983,131 (2) :447-452.
  • 6ZHOU Junbo, HAO Shan, GAO Liping, et al. Study on adsorption performance of coal based activated carbon to radioactive iodine and stable iodine[ J]. Annals of Nuclear Energy ,2014,72:237-241.
  • 7GUO Yangyang, LI Yuran, WANG Jian, et al. Effects of activated carbon properties on chlorobenzene adsorption and adsorption product analysis [ J ]. Chemical Engineering Journal, 2014,236 : 506-512.
  • 8LIANG Yan, MARTHA F, CINDY K, et al. Elucidating the role of phenolic compounds in the effectiveness of DOM adsorption on novel tailored activated carbon [ J]. Journal of Hazardous Materials, 2013,262(8) :100-105.
  • 9LI Weiguang, GONG Xujin, WANG Ke, et al. Adsorption characteristics of arsenic from micro-polluted water by an innovative coal-based mesoporous activated carbon [ J ]. Bioresource Technology ,2014,165 : 166-173.
  • 10ZENG Guangming, LIU Yuanyuan, TANG Lin, et al. Enhancement of Cd ( Ⅱ ) adsorption by polyacrylic acid modified magnetic mesoporous carbon [ J ]. Chemical Engineering Journal, 2015,259 : 153-160.

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部