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Influence of Bleach Activators in Removing Different Soils from Cotton Fabric

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Wpływ aktywatorów bielenia na usuwanie różnych zabrudzeń z tkaniny bawełnianej
Języki publikacji
EN
Abstrakty
EN
The influence of adding Sodium Perborate Tetrahydrate (NaPB) and tetraacetylethylenediamine (TAED) on the efficiency of removing soils from cotton fabric was evaluated in the study. NaPB as inorganic peroxide and TAED as a bleach activator were added to a commercial washing powder agent. Four standard soils applied on cotton fabric (EMPA standard soiled fabrics) were used in the study, i.e. 101 – carbon black/olive oil, 114 – red wine, 116 – blood/milk/ink and 160 – chocolate. The washing of fabrics was conducted in accordance with the SIST EN ISO 105-C06 standard at 40, 60 and 90 °C in Launder-Ometer apparatus. The washing efficiency was evaluated by determining the CIE L* colour coordinates of the unwashed and washed fabric samples, and the difference in ΔL* colour coordinates among them. The results showed that NaPB and TAED improve the efficiency of washing for two standard soils, have no effect on one, and deteriorate the washing results of one standard soil.
PL
W pracy oceniono wpływ dodania tetrahydratu nadboranu sodu (NaPB) i tetraacetyloetylenodiaminy (TAED) na skuteczność usuwania zabrudzeń z tkaniny bawełnianej. NaPB jako nadtlenek nieorganiczny i TAED jako aktywator wybielacza dodano do handlowego proszku do prania. W badaniu wykorzystano cztery standardowe zabrudzenia na tkaninie bawełnianej (standardowe zabrudzone tkaniny EMPA), tj. 101 – sadza/oliwa z oliwek, 114 – czerwone wino, 116 – krew/mleko/tusz i 160 – czekolada. Pranie tkanin przeprowadzono zgodnie z normą SIST EN ISO 105-C06 w 40, 60 i 90 °C w aparacie Launder-Ometer. Wydajność prania oceniano przez określenie współrzędnych kolorów CIE L* niepranych i pranych próbek tkanin oraz różnicy między nimi we współrzędnych kolorów LL*.
Rocznik
Strony
74--78
Opis fizyczny
Bibliogr. 23 poz., rys., tab.
Twórcy
  • University of Ljubljana, Faculty of Natural Sciences and Engineering, Department of Textiles, Graphic Arts and Design, Snežniška 5, 1000 Ljubljana, Slovenia
Bibliografia
  • 1. Technical Documentation of Belinka Perkemija, Ljubljana, Slovenia.
  • 2. Hofmann J, Just G, Pritzkow W, Schmidt H. Bleaching Activators and the Mechanism of Bleaching Activation. J. prakt. Chem. 1992; 334: 293-297.
  • 3. Carson PA, Fairclough CS, Mauduit C, Colsell M. Peroxy bleaches Part 1. Background and Techniques for Hazard Evaluation. Journal of Hazardous Materials 2006, A136: 438-445.
  • 4. Zahran MK, Ahmed HB. A Greener Approach for Full Flax Bleaching. The Journal of The Textile Institute 2010; 101(7): 674-678.
  • 5. Tran L et al. Depletion Rate of Hydrogen Peroxide from Sodium Perborate Bleaching Agent. JOE 2017; 43 (3): 472-476.
  • 6. Hickman WS. Peracetic Acid and Its Use in Fibre Bleaching. Review of Progress in Coloration and Related Topics 2002; 32: 13-27.
  • 7. Laitala K, Mallan Jensen H. Cleaning Effect of Household Laundry Detergents at Low Temperatures, Tenside Surfactants Detergents. 2010; 47/6: 413-420.
  • 8. Honisch M, Brands B, Weide M et al. Antimicrobial Efficacy of Laundry Detergents with Regard to Time and Temperature in Domestic Washing Machines. Tenside, Surfactants, Detergents 2016; 53(6): 547-552.
  • 9. Lambert E, Bichler S, Stamminger R. Hygiene in Domestic Laundering – Consumer Behavior in Germany. Tenside, Surfactants, Detergents 2015; 52(6): 441-446.
  • 10. Ferri A, Osset M, Abeliotis K, et al. Laundry Performance: Effect of Detergent and Additives on Consumer Satisfaction. Tenside, Surfactants, Detergents 2016; 53(4): 375-386.
  • 11. Yun C, Patwary S, LeHew M. et al. Sustainable Care of Textile Products and Its Environmental Impact: Tumble -drying and Ironing Processes. Fibers and Polymers 2017; 18(3): 590-596.
  • 12. Brands B, Brinkmann A, Bloomfield S et al. Microbicidal Action of Heat, Detergents and Active Oxygen Bleach as Components of Laundry Hygiene, Tenside, Surfactants, Detergents 2016; 53(5): 495-501.
  • 13. Špička N, Forte Tavčer P, Low-Temperature Bleaching of Knit Fabric from Regenerated Bamboo Fibers with Different Peracetic Acid Bleaching Processes. TRJ 2015; 85: 1497-1505.
  • 14. Fijan S, Šostar-Turk S. Antimicrobial Activity of Selected Disinfectants Used in a Low Temperature Laundering Procedure for Textiles. FIBRES & TEXTILES in Eastern Europe 2010; 18, 1(78): 89-92.
  • 15. Špička N, Zupin Ž, Kovač J, Forte Tavčer P. Enzymatic Scouring and Low-temperature Bleaching of Fabrics Constructed from Cotton, Regenerated Bamboo, Poly(lactic acid), and Soy Protein Fibers. Fibers and Polymers 2015; 16 8: 1723-1733.
  • 16. Forte Tavčer P. Peracetic Acid Bleaching in Textile Processing. Tekstilec 2003; 46(1/2): 19-24.
  • 17. Forte Tavčer P. Low-Temperature Bleaching of Cotton Induced by Glucose-Oxidase Enzymes and Hydrogen Peroxide Activators. Biocatalysis and Biotransformation 2012; 30(1): 20-26.
  • 18. Lim SH, Gürsoy NC, Hauser P, Hinks D. Performance of a New Cationic Bleach Activator on a Hydrogen Peroxide Bleaching System. Coloration Technology 2004; 120: 114-118.
  • 19. Shao JZ, Huang Y, Wang ZH, Liu JQ. Cold Pad-Batch Bleaching of Cotton Fabrics with a TAED/H2O2 Activating System. Coloration Technology 2010; 126: 103-108.
  • 20. Lim SH, Lee JJ, Hinks D, Hauser P. Bleaching of Cotton with Activated Peroxide Systems. Coloration Technology 2005; 121: 89-95.
  • 21. Xu C, Hinks D, Shamey R. Bleaching Cellulosic Fibers via Pre-Sorption of N-[4-(Triethylammoniomethyl)-Benzoyl]-Butyrolactam Chloride. Cellulose 2010; 17: 849-857.
  • 22. Liu K, Zhang X, Yan KL. Low-Temperature Bleaching of Cotton Knitting Fabric With H2O2/PAG System. Cellulose 2017; 24 (3): 1555-1561.
  • 23. Drol P, Kert M, Simončič B, Hladnik A. Evaluation of the Influence of Different Parameters in Removing Standard Soil from Cotton Fabric Using Multi-Functional Analysis of Variance. Tekstilec 2012; 55(3): 194-205.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-21572e6e-b5d1-4904-afd3-06a8b19abdb7
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