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Abstrakty
Previous investigation results revealed that after the Low-Temperature Plasma (LTP) treatment, the hydrophilicity of wool fibres was improved significantly. Such an improvement enhances the wool dyeing and finishing processes which might be due to the wool surface changing to a more reactive one. In this paper, wool fibres were treated with LTP with different gases, namely oxygen, nitrogen and a mixture of gases (25% hydrogen, 75% nitrogen). Investigations showed that the chemical composition of the wool fibre surface varied differently with different plasma. The variation of surface composition influences the hydrophilicity of the wool fibres. The surface chemical composition of the LTP-treated wool fibres was characterised by different characterisation methods, namely FTIR-ATR, XPS and saturated adsorption value. The experimental results of these methods are thoroughly discussed.
Czasopismo
Rocznik
Tom
Strony
194--205
Opis fizyczny
Bibliogr. 24 poz.
Twórcy
autor
- The Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China
autor
- The Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China
autor
- The Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China
Bibliografia
- 1. Kan, C.W., Chan, K., Yuen, C.W.M. and Miao, M.H. Journal of Material Processing and Technology 82, (1998) p 122.
- 2. Kan, C.W., Chan, K., Yuen, C.W.M. and Miao, M.H. Journal of Materials Processing and Technology 83, (1998) p 180.
- 3. Yan, H. and Guo, W. Journal of China Textile University (Chi. Ed.) 12(3), (1986) p 19.
- 4. Wu, J., Liu, X., Niu, A., Peng, S. and Wang, T. International Journal of Adhesion and Adhesives 19, (1999) p 381.
- 5. Gomez, N., Julia, M.R., Lewis, D.M. and Erra, P. Journal of Society of Dyers and Colourists 111, (1995) p 281.
- 6. Kan, C.W., Chan, K. and Yuen C.W.M. The Nucleus 37, (2000) p 145.
- 7. Kan, C.W., Chan, K., Yuen, C.W.M. and Miao, M.H. Journal of Hong Kong Institution of Textile and Apparel 1, (1997) p 33.
- 8. Kan, C.W., Chan, K., Yuen, C.W.M. and Miao, M.H. Journal of China Textile University (English Edition) 14, (1997) p 34.
- 9. Kan, C.W., Chan, K., Yuen, C.W.M. and Miao, M.H. Textile Asia 27, (1997) p 39.
- 10. Gomez, N., Julia, M.R., Munoz, I., Infant, M.R., Pinazo, A., Naik, A. and Erra, P. Journal of Textile Institute 85, (1994) p 215.
- 11. Wakida, T., Tokino, S., Niu, S., Kaeamura, H., Sato, Y., Lee, M., Uchiyama, H. and Inagaki, H. Textile Research Journal 63, (1993) p 433.
- 12. Douthwaite, F.J., Lewis, D.M. and Schmacher-Hamedat, U. Textile Research Journal 63, (1993) p 177.
- 13. Maclaren, J.A. and Kirkpartrick, A. Journal of Society of Dyers and Colourists 84, (1968) p 564.
- 14. Yeung, K.W., Chan, K., Zhang, Q. and Wang, S.Y. Journal of Hong Kong Institution of Textile and Apparel 1, (1997) p 10.
- 15. Kan, C.W., Chan, K., Yuen, C.W.M. and Miao, M.H. Textile Research Journal 69, (1999) p 407.
- 16. Zhang, Q. PhD Thesis, China Textile University (1996).
- 17. Kan, C.W., Chan, K., Yuen, C.W.M. and Miao, M.H. Journal of Society of Dyers and Colourists 114, (1998) p 61.
- 18. Kan, C.W., Chan, K. and Yuen, C.W.M. The Nucleus 37, (2000) p 23.
- 19. Kan, C.W., Chan, K. and Yuen, C.W.M. Research Journal of Textile and Apparel 2, (1998) p 63.
- 20. Kan, C.W., Chan, K. and Yuen, C.W.M. The Nucleus 37, (2000) p 161.
- 21. Lindberg, B.J., Hamrin, K., Johansson, G., Gelius, U., Fahlman, A., Nordling, C. and Siegbahn, K. Physica Scripta 1, (1970) p 286.
- 22. Carr, C.M., Leaver, I. H. and Hughes, A.E. Textile Research Journal 56, (1986) p 457.
- 23. Jovancic, P., Jocic, D., Molina, R., Julia, M.R. and Erra, P. AATCC Review, 3, (2003) p 25.
- 24. Molina, R. Journal of Adhesion and Science Technology, 16, (2002) p 1469.
Typ dokumentu
Bibliografia
Identyfikator YADDA
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