INVESTIGATION OF ANTIMICROBIAL PROPERTIES OF TEXTILE MATERIALS AFTER WASHING

dc.contributor.authorMartirosyan, Irina
dc.contributor.authorPakholiuk, Olena
dc.contributor.authorGolodyuk, Galyna
dc.contributor.authorLutskova, Viktoria
dc.contributor.authorLubenets, Vira
dc.contributor.organizationTechnická univerzita v Liberci
dc.date.accessioned2022-03-25T09:02:26Z
dc.date.available2022-03-25T09:02:26Z
dc.description.abstractThis work is devoted to the study of antimicrobial properties of cellulose-containing textile materials treated with new safe biocidal products of thiosulfonate structure. A resource-saving method of providing antimicrobial properties to cellulose-containing textile materials is presented. High antimicrobial activity of biocidal products after washing was established. The duration of action and expediency of their use in the textile industry are proved. It is shown that after 10 washes the treated tissues lose only 14-15% of antimicrobial properties.cs
dc.formattext
dc.format.extent8 stran
dc.identifier.doi10.15240/tul/008/2022-1-004
dc.identifier.issn1335-0617
dc.identifier.urihttps://dspace.tul.cz/handle/15240/163507
dc.language.isocscs
dc.publisherTechnical University of Liberec
dc.publisher.abbreviationTUL
dc.relation.isbasedonHanczvikkel A., Vig A., Toth A.: Survival capability of healthcare-associated, multidrug-resistant bacteria on untreated and on antimicrobial textiles, Journal of Industrial Textiles 48(7), 2019, pp. 1113-1135, https://doi.org/10.1177/1528083718754901
dc.relation.isbasedonZille A., Almeida L., Amorim T., Carneiro N., Esteves M.F., Silva C.J., Souto A.P.: Application of nanotechnology in antimicrobial finishing of biomedical textiles, Mater. Res. Express 1(3), 2014, P. 032003, https://doi.org/10.1088/2053-1591/1/3/032003
dc.relation.isbasedonPerelshtein I., Perkas N., Gedanken A.: The sonochemical functionalization of textiles, The Impact and Prospects of Green Chemistry for Textile Technology 4, 2019, рр. 161-198, https://doi.org/10.1016/B978-0-08-102491-1.00007-1
dc.relation.isbasedonGutarowska B., Pietrzak K., Machnowski W., Milczarek J.: Historical textiles – a review of microbial deterioration analysis and disinfection methods, Textile Research Journal 87(19), 2017, рр. 2388-2406, https://doi.org/10.1177/0040517516669076
dc.relation.isbasedonMartirosyan I., Pakholiuk E.: Investigation of the resistance of textile materials to the action of sea fungi. «Innovations in the management of the range, quality and safety of goods and services», IV International scientific-practical conference, Lviv, 2018, рр. 87-90
dc.relation.isbasedonGalik I.S., Semak B.D.: Problems of formation and evaluation of ecological safety of textiles, Herald of Khmelnytskyi National University 4(239), 2016, рр. 71-76, ISSN 23075732 (in Ukrainian)
dc.relation.isbasedonSterflinger K.: Fungi: their role in deterioration of cultural heritage, Fungal biology reviews 24(1-2), 2010, рр. 47- 55, https://doi.org/10.1016/j.fbr.2010.03.003
dc.relation.isbasedonMartirosyan I., Pakholiuk E.: Modern assortment and actuality of the use biocidal preporesions in the textile industry, Integration of education, science and business in the modern environment: summer disputes, International scientific-practical conference, Dnipro, 2019, pp. 433-437
dc.relation.isbasedonMorais D.S., Guedes R.M., Lopes M.A.: Antimicrobial approaches for textiles, From Research to Market. Materials 9(6), 2016, р. 498, https://doi.org/10.3390/ma9060498
dc.relation.isbasedonSANITIZED. Technology for Textiles. URL: http://www.sanitized.com/technology-for-textiles/2016, accessed on 8 January 2019
dc.relation.isbasedonGettings R.L., Triplett B.L: A new durable antimicrobial finish for textiles, Materials 9, 2016, рр. 498-512
dc.relation.isbasedonGao Y., Cranston R.: Recent advances in antimicrobial treatments of textiles, Textile Research Journal. 1(78), 2008, рр. 60-72, https://doi.org/10.1177/0040517507082332
dc.relation.isbasedonZhang C., Cui F., Zeng G., Jiang M., Yang Z., Yu Z., Zhu M., Shen L.: Quaternary ammonium compounds (QACs): A review on occurrence, fate and toxicity in the environment, Science of The Total Environment 518- 519, 2015, pp. 352-362, https://doi.org/10.1016/j.scitotenv.2015.03.007
dc.relation.isbasedonQian L., Sun G.: Durable and regenerable antimicrobial textiles: improving efficacy and durability of biocidal functions, Journal of Applied Polymer Science 91(4), 2004, рр. 2588-2593, https://doi.org/10.1002/app.13428
dc.relation.isbasedonSingh N., Sahu O: Sustainable cyclodextrin in textile applications, The Impact and Prospects of Green Chemistry for Textile Technology 11, 2018, рр. 83-105, https://doi.org/10.1016/B978-0-08-102491-1.00004-6
dc.relation.isbasedonAgarwal Ch., Csoka L.: Functionalization of wood/plantbased natural cellulose fibers with nanomaterials: a review, TAPPI Journal 17(02), 2018, рр. 92-111, https://doi.org/10.32964/TJ17.02.92
dc.relation.isbasedonAhamed M., Akhtar M.J., Raja M: ZnO nanorod-induced apoptosis in human alycolar adenocarcinoma cells via p53, surviving and bax/bel-2 pathways: role of oxidative stress, Nanomedicine: Nanotechnology, Biology and Medicine 7(6), 2011, рр. 904-913, https://doi.org/10.1016/j.nano.2011.04.011
dc.relation.isbasedonPakholiuk O.V., Martirosyan I.A., Lubenets V.I: The influence of biocidal treatment of cellulose textiles to replace its properties, Herald of Khmelnytskyi National University 6, 2018, pp. 94-98, https://doi:10.31891/2307- 5732-2018-267-6(2)-94-95 (in Ukrainian)
dc.relation.isbasedonKasiri M.B., Safapour S: Natural dyes and antimicrobials for green treatment of textiles, Environmental Chemistry Letters 6(12), 2014, рр. 1-13, https://doi.org/10.1007/978-94-007-6836-9
dc.relation.isbasedonShahid M., Mohammad F.: Green chemistry approaches to develop antimicrobial textiles based on sustainable biopolymers - a review, Industrial & Engineering Chemistry Research 52, 2013, рр. 5245-5260, https://doi.org/10.1021/ie303627x
dc.relation.isbasedonKhurshid M.F., Ayyoob M., Asad M., Shah S.N.H.: Assessment of eco-friendly natural antimicrobial textile finish extracted from aloe vera and neem plants, Fibres & Textiles in Eastern Europe 6(114), 2015, рр. 120-123, DOI: 10.5604/12303666.1172176
dc.relation.isbasedonEl-Rafie M., Ahmed H.B., Zahran M.K.: Characterization of nanosilver coated cotton fabrics and evaluation of its antibacterial efficacy, J. Carbohydrate Polymers 107, 2014, рр. 174-181, https://doi.org/10.1016/j.carbpol.2014.02.024
dc.relation.isbasedonEmam H.E., Manian A.P., Široká B., Duelli H., Redl B. Pipal A., Bechtold T.: Treatments to impart antimicrobial activity to clothing and household cellulosic-textiles - why “Nano”-silver?, Journal of Cleaner Production 39, 2013, рр. 17-23, http://dx.doi.org/10.1016/j.jclepro.2012.08.038
dc.relation.isbasedonLin J., Chen X.Y., Chen Ch.Y., Hu J.T., Zhou C.L., Cai X.F., Wang W., Zheng Ch., Zhang P.P., Cheng J., Guo Z.H., Liu H.: Durably antibacterial and bacterially antiadhesive cotton fabrics coated by cationic fluorinated polymers, ACS Applied Materials & Interfaces 10(7), 2018, рр. 6124-6136, https://doi.org/10.1021/acsami.7b16235
dc.relation.isbasedonMartirosyan І., Pakholiuk О.: Environmental safety of new biocidal products, International Multidisciplinary Conference «Science and Technology of the Present Time: Priority Development Directions of Ukraine and Poland» Wolomin, Republic of Poland, 2018, рр. 69-71
dc.relation.isbasedonBlack S.: Fashion and function: factors affecting the design and use of protective clothing, Textiles for protection, Woodhead Publishing, Cambridge, 2005, рр. 60-89, ISBN 9781855739215
dc.relation.isbasedonQian L., Sun G.: Durable and regenerable antimicrobial textiles: improving efficacy and durability of biocidal functions, Journal of Applied Polymer Science 91(4), 2004, рр. 2588-2593, https://doi.org/10.1002/app.13428
dc.relation.isbasedonSalieri B., Turner D.A., Nowack B., Hischier R.: Life cycle assessment of manufactured nanomaterials: Where are we? NanoImpact 1, 2018, рр. 108-120
dc.relation.isbasedonXu Q., Ke X., Ge N., Shen L., Zhang Y., Fu F., Liu X.: Preparation of copper nanoparticles coated cotton fabrics with durable antibacterial properties, Fibers and Polymers 19(5), 2018, рр. 1004-1013, https://doi.org/10.1007/s12221-018-8067-5
dc.relation.isbasedonZanoaga M., Tanasa F.: Antimicrobial reagents as functional finishing for textiles intended for biomedical applications. I. Synthetic organic compounds, Chemistry Journal of Moldova 9, 2014, рр. 14-32, dx.doi.org/10.19261/cjm.2014.09(1).02
dc.relation.isbasedonEmam H.E.: Antimicrobial cellulosic textiles based on organic compounds, 3 Biotech 9(29), 2019, рр. 1152- 1163, https://doi.org/10.1007/s13205-018-1562-y
dc.relation.isbasedonMartirosyan I., Pakholiuk E.: Ecological safety of textile materials for the production of overalls, Materials of the international scientific and practical conference of the applicants of higher education and young scientists "Youth - Science and Production", Innovative Technologies of Light Industry", Kherson, 2018, рр. 107- 109 (in Ukrainian)
dc.relation.isbasedonLubenets V., Karpenko O., Ponomarenko M., Zahoriy G., Krychkovska A., Novikov V.: Development of new antimicrobial compositions of thiosulfonate structure, Chemistry & Chemical Technology 7(2), 2013, рр. 119- 124
dc.relation.isbasedonLubenets V., Stadnytska N., Baranovych D., Vasylyuk S., Karpenko O., Havryliak V., Novikov V.: Thiosulfonates: The Prospective Substances against Fungal Infections, , in: Fungal Infections, de Loreto E., Tondolo J. (Eds.), IntechOpen, London, 2019, рр. 1-25, http://dx.doi.org/10.5772/intechopen.84436
dc.relation.isbasedonLubenets V. I.: Thiosulphonic acids derivatives: synthesis and properties. Ukrainian Chemistry Journal. 69(3), (2003), pp. 109-117
dc.relation.isbasedonLubenets V.I., Havryliak V.V., Pylypets A.Z., Nakonechna A.V.: Changes in the spectrum of proteins and phospholipids in tissues of rats exposed to thiosulfanilates, Regulatory Mechanisms in Biosystems 9(4), 2018, рр. 295-500, https://doi.org/10.15421/021874
dc.relation.isbasedonPylypets A.Z., Iskra R.Ya., Havryliak V.V., Nakonechna A.V., Novikov V.P., Lubenets V.I.: Effects of thiosulfonates on the lipid composition of tissues, The Ukrainian Biochemical Journal 89(6), 2017, рр. 56- 62, https://doi.org/10.15407/ubj89.06.056
dc.relation.isbasedonMartirosyan I., Pakholiuk E., Lubenets V., Peredriy O.: Investigation on stability of textile materials for overalls processed by new biocidal preparation, Technological Complexes 1(15), 2018, рр. 52-59, http://nbuv.gov.ua/UJRN/Tehkom_2018_1_9
dc.relation.isbasedonISO 6330: 2000. Textiles. Domestic washing and drying procedures for textile testing
dc.relation.isbasedonMartirosyan I., Pakholiuk O., Semak B., Lubenets V., Peredriy O.: Investigation оf wear resistance оf cottonpolyester fabric with antimicrobial treatment, Lecture Notes in Mechanical Engineering, Springer International Publishing, 2020, pp. 433-441, https://doi.org/10.1007/978-3-030-40724-7_44
dc.relation.ispartofFibres and Textiles
dc.subjecttextile materialscs
dc.subjectbiocidal treatmentcs
dc.subjectwashingcs
dc.subjectmicroorganismscs
dc.titleINVESTIGATION OF ANTIMICROBIAL PROPERTIES OF TEXTILE MATERIALS AFTER WASHINGen
dc.typeArticleen
local.accessopen access
local.citation.epage35
local.citation.spage28
local.facultyFaculty of Textile Engineeringen
local.fulltextyesen
local.relation.issue1
local.relation.volume29
Files
Original bundle
Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
INVESTIGATION OF ANTIMICROBIAL PROPERTIES OF TEXTILE MATERIALS AFTER WASHING.pdf
Size:
1.19 MB
Format:
Adobe Portable Document Format
Description:
článek
Collections