期刊文献+

节能减排微泡沫印花技术

Energy-saving and emission reduction micro-foam printing technology
下载PDF
导出
摘要 为减少纺织品印花过程中水的使用量,可采用节能减排的微泡沫印花技术。介绍了该技术的关键理论、工艺流程与配方、技术要求、操作要点及注意事项。相比传统印花技术,微泡沫印花技术可节省染料用量,减少污水处理工序,降低综合成本。 In order to reduce the amount of water used in the process of textile printing,the microfoam printing technology with energy saving and emission reduction was adopted.The key theory,technological processes and formulas,technical requirements,operation points and precautions of the technology were introduced.Compared with traditional printing technology,the micro-foam printing technology can save the amount of dyes,reduce the sewage treatment process,and lower the comprehensive cost.
作者 曹颖 朱樑 曹宗满 Cao Ying;Zhu Liang;Cao Zongman(Jiaxing Vocational and Technical College,Jiaxing/China;Zhejiang Shaoxing Beihai Printing and Dyeing Co.,Ltd.,Shaoxing/China;Zhejiang Jiaxin Silk Co.,Ltd.,Jiaxing/China)
出处 《国际纺织导报》 2019年第3期36-38,共3页 Melliand China
基金 浙江省教育厅办公室关于公布2018年度高校访问学者教师专业发展项目 访问工程师校企合作项目(FG2018193)
关键词 微泡沫 印花 节能减排 micro-foam printing energy-saving and emission reduction
  • 相关文献

参考文献3

二级参考文献23

  • 1杨红斌,吴飞鹏,李淼,蒲春生,马波,杨涛,于浩然,石端胜.低渗透油藏自适应弱凝胶辅助氮气泡沫复合调驱体系[J].东北石油大学学报,2013,37(5):78-84. 被引量:13
  • 2燕永利,张宁生,屈撑囤,杨志刚,刘立.胶体泡沫(CGA)排液动力学研究[J].化学学报,2005,63(18):1686-1692. 被引量:15
  • 3Growcock F B,Khan A M,Simon G A.Application of water-based and oil-based aphrons in drilling fluids[C].SPE 80208,2003.
  • 4Ivan C D,Growcock F B,Friedheim J E.Chemical and physical characterization of aphron-based drilling fluids[C].SPE 77445,2002.
  • 5Dai Y,Deng T.Stabilization and characterization of colloidal gas aphron dispersions[J].Journal of Colloid and Interface Science,2003,261(2):360-365.
  • 6Zhao J,Pillai S,Pilon L.Rheology of colloidal gas aphrons(microfoams)made from different surfactants[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2009,348(1):93-99.
  • 7Marmottant P,Raven J P.Microfluidics with foams[J].Soft Matter,2009,18(5):3385-3388.
  • 8Okushima S,Nisisako T,Torii T,et al.Controlled production of monodisperse double emulsions by two-step droplet breakup in microfluidic devices[J].Langmuir,2004,20(3):9905-9908.
  • 9Quennouz N,Ryba M,Argillier J F,et al.Microfluidic study of foams flow for enhanced oil recovery[J].Oil&Gas Science and Technology-Revue d'IFP Energies Nouvelles,2014,69(3):457-466.
  • 10Ma K,Liontas R,Conn C A,et al.Visualization of improved sweep with foam in heterogeneous porous media using microfluidics[J].Soft Matter,2012,8(41):10669-10675.

共引文献19

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