SELLYULOZA ASOSIDAGI TO‘QIMACHILIK MATERIALLARI UCHUN FOSFOR–AZOTLI OLIGOMER ANTIPIREN OLISH VA QO‘LLASH TEXNOLOGIYASI
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Ushbu tadqiqotda sellyuloza saqlovchi to‘qimachilik materiallari uchun ekologik xavfsiz va yuqori samarador oligomer antipiren
olish texnologiyasi ishlab chiqildi. Antipiren magniy gidroksidi, ortofosfat kislotasi, karbamid va glitserin asosida sintez qilinib,
uch xil tarkibiy nisbatda tadqiq etildi. Sintez jarayonining optimal sharoitlari 150 0 C harorat va 1,5 soat davom etishi aniqlanib,
olingan mahsulotlarning fizik-kimyoviy xossalari hamda olovbardoshlik ko‘rsatkichlari baholandi. Tadqiqot natijalariga ko‘ra, 1-
usul bo‘yicha olingan antipiren eng yuqori samaradorlikni ko‘rsatib, modifikatsiyalangan matolarning kislorod indeksi 29,3 % ga
yetdi. Antipirenning sellyuloza gidroksil guruhlari bilan kimyoviy bog‘lanishi hisobiga yuvilishga chidamliligi an’anaviy suvda
eruvchan analoglarga nisbatan 8–10 barobar yuqori ekanligi aniqlandi. Taklif etilgan texnologiya ekologik xavfsizligi, iqtisodiy
samaradorligi va yuqori olovbardoshlik xususiyatlari bilan himoya to‘qimachilik materiallari ishlab chiqarishda qo‘llash uchun
istiqbolli hisoblanadi.
1. Wang X, Song L, Yang H, Xing W, Kandol B, Hu Y. (2012) Simultaneous reduction and surface functionalization of
graphene oxide with POSS for reducing fire hazards in epoxy composites. J. Mater Chem 22:22037–22043
2. Jing J, Zhang Y, Fang ZP, Wang DY (2018) Core-shell flame retardant/graphene oxide hybrid: a self-assembly strategy
towards reducing fire hazard and improving toughness of polylactic acid. Compos Sci Technol 165:161–167
3. Huang G, Song P, Liu L, Han D, Ge C, Li R, Guo Q (2016) Fabrication of multifunctional graphene decorated with bromine
and nano-Sb2O3 towards high-performance poly mer nanocomposites. Carbon 98:689–701
4. Wang X, Zhou S, Xing W, Yu B, Feng X, Song L, Hu Y. (2013) Self-assembly of Ni–Fe layered double hydrox ide/graphene
hybrids for reducing fire hazard in epoxy composites. J Mater Chem A 1:4383–4390
5. Nazokat M., Fayzulla N. Analysis of the thermal stability and surface area of antipyrenes synthesized for textile materials
//Universum: химия и биология. – 2024. – Т. 3. – №. 12 (126). – С. 15-20.
6. Музаффарова Назокат, Нуркулов Файзулла, Джалилов Абдулахат Синтез нового агренита с высоким содержанием
фосфора и азота и его использование в хлопковых тканях // Универсум: техническая наука. 2022. №8-3 (101). URL:
cotton-fabrics
7. Muzaffarova N.S. et al. Modifikatsiyalangan tabiiy to‘qimachilik materiallarning termik barqarorligi //Journal of Chemistry
of Goods and Traditional Medicine. – 2023. – Т. 2. – №. 4. – С. 23-33.
8. 8 Muzaffarova N.S. et al. Synthesis of fire retardant with phosphorus and metal for preservation and reach of reduction of
flammability of textile materials //Kimya Problemleri. – 2024. – Т. 22. – №. 3. – С. 290-302.
9. Muzaffarova, N.Sh., & Nurkulov, F.N. (2022). Study of oligomer-antipyrine synthesis and properties of nitrogen, phosphorus
and zinc storage. ISJ Theoretical & Applied Science, 01 (105), 489-492. https://dx.doi.org/10.15863/TAS
10. Muzaffarova N.SH., Nurqulov F.N, Jalilov A.T Olovbardosh to‘qimachilik materiallari uchun fosfor, azot saqlagan
antipirenlar //NamDU ilmiy axborotnomasi-Nauchniy vestnik NamGU. – 2022. – С. 152-156.
11. Muzaffarova, N., F.Nurkulov, and N.Toshtemirova. "Synergic effect of fire retardants and their analogues for textile
materials." Science and innovation 3.A2 (2024): 5-9.
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