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TEK KULLANIMLIK DOKUSUZ YÜZEYLERİN ANTİMİKROBİYAL, SU VE KAN İTİCİ BİTİM İŞLEMLERİNİN CTAB VE FLOROKİMYASAL KULLANARAK AYNI ANDA GERÇEKLEŞTİRİLMESİ

Year 2009, Volume: 19 Issue: 2, 128 - 132, 01.12.2009

Abstract

Bu çalışmada, CTAB (Cetyl Trimethyl Ammonium Bromide) bir antimikrobiyal aktif madde olarak polyester, poliamid ve viskoz dokusuz yüzey kumaşlara uygulanmıştır. Aynı zamanda CTAB, FC112 adı verilen su itici özellikteki bir florokimyasal ile birlikte de uygulanmıştır. İşleme tabi tutulan örneklerin antimikrobiyal, su ve kan iticilik özellikleri araştırılmıştır. İşleme tabi tutulan örneklerin antimikrobiyal özelliklerini açığa çıkarmak için, yüzeydeki bakterilerdeki azalma değerleri S. Aureus, E. Coli ve P. Aeroginosa ile ölçülmüştür. Sonuçlar, farklı konsantrasyondaki CTAB solüsyonlarının (%1, %2, %4 ve %8) iyi değerlerde antimikrobiyal özellik gösterdiğini ortaya koymuştur. %0,5, %1 ve %2 konsantrasyondaki CTAB uygulamalarının polyester, polipropilen ve viskoz dokusuz yüzey kumaşlarda kabul edilebilir antimikrobiyal etki gösterdiğini açığa çıkarmıştır. CTAB ve florokimyasalın birlikte kullanımı ile farklı örneklerde yapılan uygulamalar, iyi değerlerde antimikrobiyal, su ve kan itici nitelik göstermiştir

References

  • 1. Seong, H.S., Kim, J.P., Ko, S.W., 1999, “Preparing chito-oligosaccharides as Antimicrobial Agents for Cotton”, Text. Res. J. 69(7), pp:483-488.
  • 2. Goswami, B.C., Suryadevara, J., Vigo, T.L., 1984, “Determination of Poisson’s Ratio in Thermally Bonded Nonwoven Fabrics, Text. Res. J. 54(6), pp. pp:391-396.
  • 3. White, W.C., Kuehl, M.H., 2002, “The Role of Construction Textiles in Indoor Environmental Pollution”, J. of Industrial Textile, 32(1), pp: 23-43.
  • 4. Tan, S., Li, G., Shen, J., Liu, Y., Zong, M., 200, “Study of modified polypropylene nonwoven cloth. II. Antibacterial activity of modified polypropylene nonwoven cloths”, J. of Applied Polymer Science, 77(9), pp:1869–1876.
  • 5. Shin, Y., Son, K., Yoo, D. I., Hudson, S., McCord, M., Matthews, S. and Whang, Y. J., 2006, “Functional Finishing of Nonwoven Fabrics. I. Accessibility of Surface Modified PET Spunbond by Atmospheric Ppressure He/O2 Plasma Treatment”, J. of Applied Polymer Science, 100(6), pp: 4306-4310.
  • 6. Lee, S., Cho, J.S. and Cho, G., 1999, “Antimicrobial and Blood Repellent Finishes for Cotton and Nonwoven Fabrics Based on Chitosan and Fluoropolymers”, Text. Res. J., 69(2), pp:104-112.
  • 7. Nakashima, T., Sakagami, Y., Ito, H., Matsuo, M., 2001, Anti-bacterial Activity of Cellulose fabrics Modified with Metallic Salts”, Text. Res. J., 71(8) pp: 688-694.
  • 8. Montazer, M., Afjeh. M.G., 2006, “Simultaneous x-linking and antimicrobial finishing of cotton fabric”, J. of Applied Polymer Science, 103(1), pp: 178-185.
  • 9. Diz, M., Infante, M.R., Erra, P., Manresa, A., 2001, “Antimicrobial Activity of Wool Treated with a New Thiol Cationic Surfactants”, Text. Res. J., 71, pp: 695-700.
  • 10. Bagherzadeh, R., Montazer, M., Latifi, M., Sheikhzadeh, M., and Sattari, M., 2007, “Evaluation of comfort properties of polyester knitted spacer fabrics finished with water repellent and antimicrobial agents”, Fibers and Polymers, 8(4), pp: 386-392.
  • 11. Son, Y.A., Sun, G., 2003, “Ionic Interactions with Quarternary Ammonium Salts”, J. of Applied Polymer Science, 90(8), 2194–2199.
  • 12. Zhu, P., Sun , G., 2004, “Antimicrobial finishing of wool fabrics using quaternary ammonium salts”, J. of Applied Polymer Science, 93(3) pp: 1037 – 1041.
  • 13. S. Deans, G. Ritchie, 1987, “Antibacterial properties of plant essential oils”, International J. of Food and Microbiology, 5, pp: 165-180.

SIMULTANEOUS ANTIMICROBIAL, WATER AND BLOOD REPELLENT FINISHING OF DISPOSAL NONWOVENS USING CTAB AND FLUOROCHEMICAL

Year 2009, Volume: 19 Issue: 2, 128 - 132, 01.12.2009

Abstract

In this research, Cetyl Trimethyl Ammonium Bromide (CTAB), as an antimicrobial agent, applied on polyester, polypropylene and viscose non-woven fabrics. Also, CTAB coapplied with a fluorochemical based water repellent agent namely FC1112. The antimicrobial, water and blood repellency of the treated samples were investigated. To reveal the antimicrobial properties of the treated samples, the zone of inhibition and reduction of bacteria were measured with S. aureus, E. coli and P. aeroginosa. The results showed a good antimicrobial property on different concentration of CTAB solutions (1%, 2%, 4% and 8%). Application of CTAB with concentration of (0.5%, 1% and 2%) on polyester, polypropylene and viscose nonwoven fabrics indicated a reasonable antimicrobial effect. Co-application of CTAB with fluorochemical on different samples also showed a good antimicrobial, water and blood repellency properties

References

  • 1. Seong, H.S., Kim, J.P., Ko, S.W., 1999, “Preparing chito-oligosaccharides as Antimicrobial Agents for Cotton”, Text. Res. J. 69(7), pp:483-488.
  • 2. Goswami, B.C., Suryadevara, J., Vigo, T.L., 1984, “Determination of Poisson’s Ratio in Thermally Bonded Nonwoven Fabrics, Text. Res. J. 54(6), pp. pp:391-396.
  • 3. White, W.C., Kuehl, M.H., 2002, “The Role of Construction Textiles in Indoor Environmental Pollution”, J. of Industrial Textile, 32(1), pp: 23-43.
  • 4. Tan, S., Li, G., Shen, J., Liu, Y., Zong, M., 200, “Study of modified polypropylene nonwoven cloth. II. Antibacterial activity of modified polypropylene nonwoven cloths”, J. of Applied Polymer Science, 77(9), pp:1869–1876.
  • 5. Shin, Y., Son, K., Yoo, D. I., Hudson, S., McCord, M., Matthews, S. and Whang, Y. J., 2006, “Functional Finishing of Nonwoven Fabrics. I. Accessibility of Surface Modified PET Spunbond by Atmospheric Ppressure He/O2 Plasma Treatment”, J. of Applied Polymer Science, 100(6), pp: 4306-4310.
  • 6. Lee, S., Cho, J.S. and Cho, G., 1999, “Antimicrobial and Blood Repellent Finishes for Cotton and Nonwoven Fabrics Based on Chitosan and Fluoropolymers”, Text. Res. J., 69(2), pp:104-112.
  • 7. Nakashima, T., Sakagami, Y., Ito, H., Matsuo, M., 2001, Anti-bacterial Activity of Cellulose fabrics Modified with Metallic Salts”, Text. Res. J., 71(8) pp: 688-694.
  • 8. Montazer, M., Afjeh. M.G., 2006, “Simultaneous x-linking and antimicrobial finishing of cotton fabric”, J. of Applied Polymer Science, 103(1), pp: 178-185.
  • 9. Diz, M., Infante, M.R., Erra, P., Manresa, A., 2001, “Antimicrobial Activity of Wool Treated with a New Thiol Cationic Surfactants”, Text. Res. J., 71, pp: 695-700.
  • 10. Bagherzadeh, R., Montazer, M., Latifi, M., Sheikhzadeh, M., and Sattari, M., 2007, “Evaluation of comfort properties of polyester knitted spacer fabrics finished with water repellent and antimicrobial agents”, Fibers and Polymers, 8(4), pp: 386-392.
  • 11. Son, Y.A., Sun, G., 2003, “Ionic Interactions with Quarternary Ammonium Salts”, J. of Applied Polymer Science, 90(8), 2194–2199.
  • 12. Zhu, P., Sun , G., 2004, “Antimicrobial finishing of wool fabrics using quaternary ammonium salts”, J. of Applied Polymer Science, 93(3) pp: 1037 – 1041.
  • 13. S. Deans, G. Ritchie, 1987, “Antibacterial properties of plant essential oils”, International J. of Food and Microbiology, 5, pp: 165-180.
There are 13 citations in total.

Details

Other ID JA87UK73TN
Journal Section Articles
Authors

Majid Montazer This is me

Fatma Rangchı This is me

Publication Date December 1, 2009
Submission Date December 1, 2009
Published in Issue Year 2009 Volume: 19 Issue: 2

Cite

APA Montazer, M., & Rangchı, F. (2009). SIMULTANEOUS ANTIMICROBIAL, WATER AND BLOOD REPELLENT FINISHING OF DISPOSAL NONWOVENS USING CTAB AND FLUOROCHEMICAL. Textile and Apparel, 19(2), 128-132.

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