期刊文献+

ZnCl_(2)预处理改善超疏水滤纸性能的研究 被引量:1

Study on Improving the Performance of Superhydrophobic Filter Paper by ZnCl_(2) Pretreatment
下载PDF
导出
摘要 以滤纸为基材,通过ZnCl_(2)预处理和表面修饰法制备超疏水滤纸,探讨了ZnCl_(2)预处理对超疏水滤纸的疏水性、稳定性、油水分离效率等的影响。结果表明,ZnCl_(2)预处理使纤维素部分结晶区被打开,暴露出更多羟基,改善了滤纸的接触角和滚动角,最佳值分别达154.8°和6°;当纸张在中等酸碱性溶液(pH值4~10)中时,经过预处理的超疏水滤纸接触角保持在150°以上,表明ZnCl_(2)预处理提高了滤纸的化学稳定性和热稳定性。该超疏水滤纸对三氯甲烷分离30次后,其分离效率保持在95%以上。 The superhydrophobic filter paper was prepared by ZnCl_(2) pretreatment and surface modification using filter paper as substrate.The effects of ZnCl_(2) pretreatment on hydrophobicity,stability and separation efficiency towards oil and water of hydrophobic filter paper were discussed. The results showed that the pretreatment could open the crystalline region of cellulose and expose more hydroxyl groups. The contact angle and sliding angle of filter paper were improved by ZnCl_(2) pretreatment with the optimum values of 154. 8° and 6°,respectively. The contact angle of the pretreated superhydrophobic filter paper remained above 150° when the paper was in a neutral solution(pH value of 4~10),indicating that ZnCl_(2) pretreatment improved the chemical stability and thermal stability of the filter paper. The hydrophobic filter paper maintained a separation efficiency of more than 95% after 30 times of separation towards thichloromethane.
作者 曹鑫宇 黄关红 胡志军 张露 曹雨臣 CAO Xinyu;HUANG Guanhong;HU Zhijun;ZHANG Lu;CAO Yuchen(Zhejiang Key Lab of Biomass Recycling and Ecological Treatment,Zhejiang University of Science and Technology,Hangzhou,Zhejiang Province,310023)
出处 《中国造纸》 CAS 北大核心 2021年第7期87-92,共6页 China Pulp & Paper
基金 浙江省基础公益研究计划/工业项目(LGG19C160001) 浙江省重点研发项目(2019C01156) 浙江省26县绿色技术应用项目(2019C02042)。
关键词 滤纸 超疏水 ZnCl_(2)预处理 纳米二氧化硅 filter paper superhydrophobic ZnCl_(2) pretreatment nano silica
  • 相关文献

参考文献5

二级参考文献28

  • 1范娟,詹怀宇,刘明华.木质素基吸附材料的研究进展[J].中国造纸学报,2004,19(2):181-187. 被引量:49
  • 2叶代勇,黄洪,傅和青,陈焕钦.纤维素化学研究进展[J].化工学报,2006,57(8):1782-1791. 被引量:147
  • 3Cheung A K, Leypoldt J K. The hemodialysis membranes: A historical perspective, current state and fijture prospect[J].Seminars in Nephrology, 1997, 17(3): 196-213. 被引量:1
  • 4Kim C W, Frey M W, Marquez M, et al. Preparation of submicron-scale, electrospun cellulose fibers via direct dissoIution[J].Journal of Polymer Science Part B: Polymer Physics, 2005, 43(13): 1673-1683. 被引量:1
  • 5Hon DNS. Cellulose and its derivatives: Structures, reactions, and medical uses[J]. Polysaccharides in Medicinal Applications.New York, USA: Marcel Dekker, 1996: 87-105. 被引量:1
  • 6El-Saied H,Basta A H, Barsoum B N, et al. Cellulose membranes for reverse osmosis Part I . RO cellulose acetate membranesincluding a composite with poIypropyIene[J]. Desalination, 2003, 159(2): 171-181. 被引量:1
  • 7Yin C, Li J, Xu Q, et al. Chemical modification of cotton cellulose in supercritical carbon dioxide: Synthesis andcharacterization of cellulose carbamate [J]. Carbohydrate Polymers, 2007, 67(2): 147-154. 被引量:1
  • 8Sescousse R, Gavillon R, Budtova T. Aerocellulose from cellulose-ionic liquid solutions: Preparation, properties andcomparison with cellulose-NaOH and cellulose-NMMO routes [J]. Carbohydrate Polymers, 2011,83(4): 1766-1774. 被引量:1
  • 9Marson G A, El Seoud O A. Cellulose dissolution in lithium chloride/N^N-dimethylacetamide solvent system: Relevance ofkinetics of decrystallization to cellulose derivatization under homogeneous solution conditions[J]. Journal of Polymer SciencePart A: Polymer Chemistiy, 1999,37(19): 3738-3744. 被引量:1
  • 10Ishii D, Tatsumi D, Matsumoto T. Effect of solvent exchange on the supramolecular structure, the molecular mobility and thedissolution behavior of cellulose in LiCl/DMAc[J]. Carbohydrate Research, 2008, 343(5): 919-928. 被引量:1

共引文献40

同被引文献12

引证文献1

二级引证文献3

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