116
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Role of Lignin Enriched Natural Sesbania aculeata (Dhaincha) Fiber for Ultraviolet Protection and Thermal Comfort of Woven Textiles

, , ORCID Icon &
Pages 13609-13623 | Published online: 24 Aug 2022

References

  • Abidi, N. E., and G. A. Hequet. 2001. “Effects of dyeing and finishing on ultraviolet transmission of cotton fabrics.” In AATCC book of papers. Greenville, SC. AATCC, research triangle Park, NC. 105–09.
  • Achwal, W. B. 2000. UV protection by textiles. Colourage 4:50–51.
  • Ahmed, A. S., M. S. Islam, A. Hassan, M. M. Haafiz, M. M. Islam, and R. Arjmandi. 2014. Impact of succinic anhydride on the properties of jute fiber/polypropylene bio composites. Fibers and Polymers 15 (2):307–14. doi:10.1007/s12221-014-0307-8.
  • Ammayappan, L., and S. Jose. 2015. “Functional aspects, eco-testing, and environmental impact of natural dyes.” In Handbook of sustainable apparel production, 333–350. CRC Press.
  • Anonymous. 2006. “CIE (international commission on Illumination) technical report.” In UV protection and Clothing, 1-52. Vienna, Austria: CIE 172:2006 CIE Central Bureau.
  • Aulstralian Guide for UV Protective products. 2003. released by Australian radiation protection and nuclear safety agency. Accessed on 31st Jan, 2022. www.arpansa.gov.au/uvrg/main.htm
  • Bajaj, P., V. K. Kothari, and S. B. Ghosh. 2000. Some innovations in UV protective clothing. Indian Journal of Fibres and Textile Research 35 (4):315–29.
  • Das, A. R., K. S. Alagirusamy, and P. Kumar. 2012. Study on heat transmission through multilayer clothing assemblies under different convective modes. Journal of the Textile Institute 103 (7):777–86. doi:10.1080/00405000.2011.607570.
  • Eckhardt, C., and C. Rohwer. 2000. UV protector for cotton fabrics. AATCC Review 32 (4):21–23.
  • Edlich, R. F., M. J. Cox, D. G. Becker, J. H. Horowitz, et al. 2004. “Revolutionary advances in sun protective clothing – An essential step in eliminating skin cancer in our world.” Journal of Long Term Effects of Medical Implants. 14(2):105. doi:10.1615/JLongTermEffMedImplants.v14.i2.30
  • Gangwar, A. K. S., P. Vishnoi, D. B. Shakyawar, M. K. Singh, and S. Jose. 2021. Optimization of sodium lignosulfonate treatment on nylon fabric using Box–Behnken response surface design for UV protection. Autex Research Journal. doi:10.2478/aut-2021-0011.
  • Ghosh, S., R. Das, and S. Maity. 2018. “Optimization of material and process parameters of fibrous quilt for comfortable heat loss from human body.” The Journal of the Textile Institute. Published online ahead of print. doi:10.1080/00405000.2018.1531742
  • Gies, P. 2007. Photo protection by clothing. Photo Dermatol Photo Immunol Photomed 23:264–74. doi:10.1111/j.1600-0781.2007.00309.x.
  • Gu, X. D., M. Y. Sun, L. Zhang, H. W. Fu, L. Cui, R. Z. Chen, D. W. Zhang, and J. K. Tian. 2010. UV-B induced changes in the secondary metabolites of Morus alba L. leaves. Molecules 15:2980–93. doi:10.3390/molecules15052980.
  • Haifeng, Z., Y. Dongjie, and J. Y. Zhu. 2016. Molecular structure of sodium lignosulfonate from different sources and their properties as dispersant of TiO2 slurry. Journal of Dispersion Science and Technology 37:296–303. doi:10.1080/01932691.2014.989572.
  • Hazarika, D., N. Gogoi, S. Jose, R. Das, and G. Basu. 2017. Exploration of future prospects of Indian pineapple leaf, an agro waste for textile application. Journal of Cleaner Production 141:580–86. doi:10.1016/j.jclepro.2016.09.092.
  • Holme, I. 2003. UV absorbers for protection and performance. International Dyer 4:9–10, 13.
  • Hustvedt, G., and P. C. Crews. 2005. The ultraviolet protection factor of naturally-pigmented cotton. The Journal of Cotton Science 9:47–55.
  • Ibrahim, N. A., E. A. Allam, and M. B. H. at El. 2007. UV-protective finishing of cellulose/ wool blended fabrics. Polymer-Plastics Technology and Engineering 46 (9):2. doi:10.1080/03602550701280364.
  • Jose, S., L. Mishra, G. Basu, and A. K. Samanta. 2016. Study on reuse of coconut fibre chemical retting bath. Part 1: Retting efficiency. Journal of Natural Fibers 13:603–09. doi:10.1080/15440478.2015.1093441.
  • Kalita, B. B., S. Jose, S. Boruah, S. Kalita, and S. M. Sarika. 2019. Hibiscus sabdariffa (Roselle): A potential source of bast fiber. Journal of Natural Fibers 16:49–57. doi:10.1080/15440478.2017.1401504.
  • Kondratyev, Y. K., and C. A. Varotsos. 2001. Global tropospheric ozone dynamics. Part II: Numerical modelling of tropospheric ozone variability. Environment Science Pollution Research International 8 (2):113–19. doi:10.1007/BF02987304.
  • Mallik, S. K., and T. Arora. 2003. UV radiations: Problems and remedies. Man Made Textiles in India 5:164–69.
  • Noman, M. T., N. Amor, M. Petru, A. Mahmood, and P. Kejzlar. 2021a. Photocatalytic behaviour of zinc oxide nanostructures on surface activation of polymeric fibres. Polymers 13 (8):1227. doi:10.3390/polym13081227.
  • Noman, M. T., M. Petru, P. Louda, and P. Kejzlar. 2021b. Woven textiles coated with zinc oxide nanoparticles and their thermophysiological comfort properties. Journal of Natural Fibers 1–13. doi:10.1080/15440478.2020.1870621.
  • Osterwalder, U., W. Schlenker, and H. Rohwer. 2000. Facts and fiction on ultraviolet protection by clothing. Radiation Protection Dosimetry 91 (1):255–59. doi:10.1093/oxfordjournals.rpd.a033213.
  • Palacin, F. 1997. Textile finish protects against UV radiation. Melliand International 3:169–72.
  • Perkin, S. W. 2000. Functional finishes and high performance textiles. Textile Chemists and Colorists and American Dyestuff Reporter 32 (4):24–27.
  • Ray, A., K. Singha, P. Pandit, and S. Maity. 2020. Advanced ultraviolet protection for protective textiles and clothing. In Advances in Functional and Protective Textiles, ed. Shahid-ul-Islam and B. S. Butola, 243–60. UK: Elsevier. doi:10.1016/B978-0-12-820257-9.00011-4
  • Rex, M., R. J. Salawitch, P. Vonder Gathen, N. R. P. Harris, Chipperfield, M. P., Naujokat, B., 2004. Arctic ozone loss and climate change. Geophysical Research Letters 31:L04116. doi:10.1029/2003GL018844.
  • Rupp, J., A. Bohringer, A. Yonenaga, and J. Hilden. 2001. Textiles for protection against harmful ultraviolet radiation. International Textile Bulletin 47 (6):8–20.
  • Sadeghifar, H., and A. Ragauskas. 2020. Lignin as a UV light blocker—A review. Polymers 12 (5):1134. doi:10.3390/polym12051134.
  • Sarkanen, K. V., and H. L. Hergert. 1971. Classification and distribution. In Lignins; Occurrence, formation, structure and reactions, ed. K. V. Sarkanen and L. C. H, 43–94. Wiley-interscience New York.
  • Shi, J., and J. Li. 2012. Metabolites and chemical group changes in the wood-forming tissue of Pinus koraiensis under inclined conditions. Bio Resources 7:3463–75.
  • Singh, M. K. 2005. Sun protective clothing. Asian Textile Journal 1-2:91–97.
  • Singh, N., and A. Rani. 2013. Extraction and processing of Sesbania aculeata fibre. Asian Journal of Home Science 8 (2):399–402.
  • Solar, G. 2002. UV Index: A Practical Guide. Geneva, Switzerland: World Health Organization.
  • Srinivasan, M., and B. M. Gate Wood. 2000. Relationship of dye characteristics to UV protection provided by cotton fabric. TCC and ADR 32 (4):36–43.
  • Stenius, P., J. Gullichsen, and H. Paulapuro. 2000. Papermaking Science and Technology, Book 3. Forest Products Chemistry. Jyväskylä: Fapet Oy, 350 p.
  • Subramaniam, V. D., S. V. Prasad, A. Banerjee, M. Gopinath, R. Murugesan, F. Marotta, and S. Pathak. 2019. Health hazards of nanoparticles: Understanding the toxicity mechanism of nanosized ZnO in cosmetic products. Drug and Chemical Toxicology 42 (1):84–93. doi:10.1080/01480545.2018.1491987.
  • Tejado, A., C. Pena, J. Labidi, J. M. Echeverria, and I. Mondragon. 2007. Physico-chemical characterization of lignins from different sources for use in phenol–formaldehyde resin synthesis. Bio Resource Technology 98:1655–63. doi:10.1016/j.biortech.2006.05.042.
  • Vanicek, K., T. Frei, Z. Litynska, and A. Schmalwieser. 2000. UV index for the public; A guide for publication and interpretation of solar UV index forecasts for the public prepared by the Working group 4. In of the COST-713 Action “UV-B Forecasting”; Eur. Coop. In the field of Sci. And Tech. Brussels: Res.
  • Wang, M., M. Zhang, L. Pang, C. Yang, Y. Zhang, J. Hu, and G. Wu. 2019. Fabrication of highly durable polysiloxane-zinc oxide (ZnO) coated polyethylene terephthalate (PET) fabric with improved ultraviolet resistance, hydrophobicity, and thermal resistance. Journal of Colloid and Interface Science 537:91–100. doi:10.1016/j.jcis.2018.10.105.
  • Yang, D., H. Li, Y. Qin, R. Zhong, Bai, M., Qiu, X. Q., 2015. Structure and properties of sodium lignosulfonate with different molecular weight used as dye dispersant. Journal of Dispersion Science and Technology 36:532–39. doi:10.1080/01932691.2014.916221.
  • Zimniewska, M., R. Kozlowski, and J. Batog. 2008. Nanolignin modified linen fabric as a multifunctional product. Molecular Crystals and Liquid Crystals 484 (1):43. doi:10.1080/15421400801903395.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.