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Use of lavender extract in dyeing woolen fabrics and protecting them from moths

Field of Science:ChemistryChemistry (miscellaneous)
National field of science (HAC):01.04.06 — Polymer physics02.00.01 — Inorganic chemistry02.00.02 — Analytical chemistry02.00.03 — Organic chemistry02.00.04 — Physical chemistry02.00.06 — High-molecular compounds02.00.07 — Chemistry and technology of composite, paint-and-varnish and rubber materials02.00.08 — Chemistry and technology of oil and gas02.00.09 — Commodity chemistry02.00.10 — Bioorganic chemistry02.00.11 — Colloid and membrane chemistry02.00.12 — Nanochemistry, nanophysics and nanotechnology02.00.13 — Technology of inorganic substances and materials based on them02.00.14 — Technology of organic substances and materials based on them02.00.15 — Technology of silicate and refractory non-metallic materials02.00.16 — Processes and apparatuses of chemical technology and food production04.00.08 — Mineralogy. Crystallography06.01.04 — Agrochemistry11.00.03 — Land hydrology. Water resources. Hydrochemistry15.00.02 — Pharmaceutical chemistry and pharmacognosy02.00.05 — Chemistry and technology of cellulose and pulp-and-paper production02.00.17 — Technologies and biotechnologies for processing, storage and refining of agricultural and food products04.00.02 — Geology, prospecting and exploration of solid mineral deposits. Metallogeny and geochemistry
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O_TJ.2024.04.17_1d5ad980.pdf

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ARTICLE ANNOTATION

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The article presents the results of scientific research on the development of technology for imparting mole-proof properties to woolen fabrics in the presence of Lavender. Designed to repel moths and scent clothes. Lavender is used as an ether at home to protect woolen products from moths. The use of active and natural dyes achieves durable coloring for washing. The composition for mothproof finishing of woolen textile materials containing dye, textile auxiliary substances and water is distinguished by the fact that in order to increase the efficiency, environmental friendliness and resource saving of the process, it contains Lavender extract - Lamiáceae as an insecticide. At the same time, the positive aspects of using the proposed composition for moth-proof finishing are illustrated by the following examples: a combined continuous method of dyeing with natural dye and moth-proof finishing of woolen fabric; a combined continuous process of dyeing with active dye and moth-proof finishing of woolen fabric. In both examples, the dye concentration can be adjusted depending on the desired color intensity. Indicators of moth-proofing and strength (coloring) properties of samples of dyed wool textile materials were assessed according to GOST 9.055-75.

AUTHORS

Z.Islamova

TOSHKENT TO'QIMACHILIK VA YENGIL SANOAT INSTITUTI

Tags

# natural dyes# wool fabric# mothproof finishing# final finishing# color intensity# lavender extract# active dyes# moth resistance

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References

Sun D., Lebedytė M., & Siddiqui M.O. (2023). Mechanical finishing of wool for improved property and functionality. In S. Jose, G. Basu, & S. Thomas (Eds.), The Wool Handbook: Morphology, Structure, Properties, Processing, and Applications (1st ed., pp. 123-138). Elsevier.

Kumari Medha, Salim Rajna, Laimayum Jogeeta Devi, Lata Samant, Seiko Jose A comprehensive review on moth repellent finishing of woolen textiles Journal of Cultural Heritage Volume 49, May–June 2021, Pages 260-27.

T.Nadeem, K.Javed, F.;Anwar, M.H.Malik, A.Khan. Sustainable Dyeing of Wool and Silk with Conocarpus erectus L. Leaf Extract for the Development of Functional Textiles. Sustainability 2024, 16, 811. P. 341-356. https://doi.org/10.3390/su1602081

Laimayum Jogeeta Devi, Rajna Salim, Seiko Jose, Sumeet Grewal, Sustainable moth repellent finishing for wool January 2024 In book: The Wool Handbook (pp.341-356) DOI:10.1016/B978-0-323-99598-6.00023-2

Kumar, R.; Tripathi, Y. Natural Dyes from Forest Biomass; Forest Research Institute: Dehradun, India, 2011; pp. 51–69. 13. Melaku, A.; Demeke, G.; Aschale, M.; Alemayehu, F.; Semegn, G. Extraction and Characterization of Natural Dye Stuff from Spent Coffee Ground and Bio-Mordant from Mango Bark. J. Nat. Fibers 2023, 20, 2276725.

Nabieva I.A., Islamova Z.Sh., Khamidova V.D. Improvement of the process of dying of wool with natural dyes. The Journal of Almaty Technological University. 2023;(4):43-52. (In Russ.) https://doi.org/10.48184/2304-568X-2023-4-43-51

Che, J.; Yang, X. A recent (2009–2021) perspective on sustainable color and textile coloration using natural plant resources. Heliyon 2022, 8, e10979.

Jubair, N.; Rajagopal, M.; Chinnappan, S.; Abdullah, N.B.; Fatima, A. Review on the Antibacterial Mechanism of Plant-Derived Compounds against Multidrug-Resistant Bacteria (MDR). Evid.-Based Complement. Altern. Med. 2021, 2021, 3663315. [CrossRef]

Hatab, S. Antimicrobial properties and mechanism of action of some plant extracts against food pathogens and spoilage microorganisms. Front. Microbiol. 2018, 9, 1639.

Peter E. Ingham, Matthew Sunderland, Steve McNeil. Novel Eco-friendly Wet Processing of Wool and End-of-life Options. BOOK/ 2013/10/24. Conference Paper · October 2013

http://www.aatcc.org/. дата поступления 23 декабря 2004 г.

R.Burges. Protection of wool against insects by mitin FF and DDT. Journal of the Society of Chemical Industry. 2010. 68(4): pp.121 – 126.

CN1125789A - Moth-proof knitting wool and its treatment technology - Google Patents 1995

Islamova Z.SH., I.A.Nabiyeva A.A.Miratayev. // Izucheniye protsessa obessvechivaniya sherstyanogo volokna / Nauchno-metodicheskiy jurnal «Vestnik nauki i obrazovaniya» – Moskva, № 13 (49) (sentabr 2018 g.) – Izd. “Problemi nauki”. – 2018. – S. 41-44.

Instructions for use.Compyuter color matching system operation and maintennce manual. Korea industrial technology ODA. 2012. P.79.

Yusuf, M., Shabbir, M., & Mohammad, F. (2017). Natural Colorants: Historical, Processing and Sustainable Prospects. Natural products and bioprospecting, 7(1), 123–145. https://doi.org/10.1007/s13659-017-0119-9