89
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Effect of Okra Plant Lifespan upon Tensile Properties of Okra Fibers

, , &
Pages 14909-14923 | Published online: 23 May 2022

References

  • Ali, M. R., O. Kozan, A. Rahman, K. Islam, and M. I. Hossain. 2015. Jute retting process: Present practice and problems in Bangladesh. Agricultural Engineering International: CIGR Journal 17 (2):243–47.
  • Ammayappan, L., K. K. Samanta, and R. K. Ghosh. 2017. Training manual on recent advances in processing technologies for value addition of jute and allied fibers. Edited by. L. Ammayappan, K. K. Samanta, and R. K. Ghosh, Kolkata: ICAR-National Institute of Research on Jute and Allied Fiber Technology.
  • Arrakhiz, F. Z., M. Malha, R. Bouhfid, K. Benmoussa, and A. Qaiss. 2013. Tensile, flexural and torsional properties of chemically treated alfa, coir and bagasse reinforced polypropylene. Composites Part B: Engineering 47 (April):35–41. Elsevier. doi:10.1016/J.COMPOSITESB.2012.10.046.
  • Chen, H. 2014. Chemical composition and structure of natural lignocellulose. In Biotechnology of lignocellulose: Theory and practice, 25–71. Chemical Industry Press, Beijing and Springer Science+Business Media Dordrecht. doi:10.1007/978-94-007-6898-7.
  • Das, B., K. Chakrabarti, S. Tripathi, and A. Chakraborty. 2014. Review of some factors influencing jute fiber quality. Journal of Natural Fibers 11 (3):268–81. doi:10.1080/15440478.2014.880103.
  • De Rosa, I., J. Maria, M. Kenny, D. Puglia, C. Santulli, and F. Sarasini. 2010. Morphological, thermal and mechanical characterization of okra (Abelmoschus Esculentus) fibres as potential reinforcement in polymer composites. Composites Science and Technology 70(1):116–22. Elsevier Ltd. doi:10.1016/j.compscitech.2009.09.013.
  • Elmogahzy, Y., and R. Farag. 2018. “Tensile properties of cotton fibers: Importance, research, and limitations.” Handbook of Properties of Textile and Technical Fibres, 223–73. http://www.sciencedirect.com/science/article/pii/B9780081012727000079.
  • Fathima, M., and A. Balasubramanian. 2006. Effect of plant growth regulators on the quality of bast fibres in abelmoschus esculentus (Linn.) Moench. Acta Botanica Croatica 65 (1):101–12.
  • Garside, P., and P. Wyeth. 2004. Identification of cellulosic fibres by FTIR spectroscopy: thread and single fibre analysis by attenuated total reflectance. Studies in Conservation 48 (4):269–75. doi:10.1179/sic.2003.48.4.269.
  • Gogoi, N., M. Gogoi, and S. Choudhury. 2017. Utilization of agro waste-okra and its potentiality. Asian Journal of Home Science 12 (1):250–56. doi:10.15740/has/ajhs/12.1/250-256.
  • Gupta, P. K., and S. Patra. 2019. Effect of retting period on okra fiber optical property. In Innovation invention and industrialization emerging issues, ed. S. Dhar, U. Dhar, M. Sainy, and S. D. Mishra, 43–52. New Delhi, India: Excel India Publishers.
  • Gupta, P. K., S. Patra, and K. K. Samanta. 2021. Potential of okra for application in textiles: A review. Journal of Natural Fibers 18 (11):1788–800. doi:10.1080/15440478.2019.1697997.
  • Iyer, K. R. K., and R. P. Nachane. 1980. Strength from single-fiber test data. Textile Research Journal 50 (10): 639–41.
  • Kocak, E. D., N. Merdan, I. Mistik, and B. Y. Sahinbaskan. 2018. “Fiber extraction from okra plant agricultural wastes, their characterizations and surface modifications by environmental methods.” In, 53–80. Springer Singapore. doi:10.1007/978-981-10-8578-9_3.
  • Lee, C. H., A. Khalina, S. H. Lee, and M. Liu. 2020. A comprehensive review on bast fibre retting process for optimal performance in fibre-reinforced polymer composites. Advances in Materials Science and Engineering 2020. doi:10.1155/2020/6074063.
  • Makhadmeh, I. M., and K. I. Ereifej. 2004. Geometric characteristics and chemical composition of okra (Hibiscus Esculentus L.) grown under semi-arid conditions. International Journal of Food Properties 7 (1):83–90. doi:10.1081/JFP-120022983.
  • Martin, F. 1982. Okra, potential multiple-purpose crop for the temperate zones and tropics. Economic Botany 36 (3):340–45. http://proxy2.marmara-elibrary.com/MuseSessionID=0210r0e2j/MuseProtocol=http/MuseHost=download.springer.com/MusePath/static/pdf/247/art%253A10.1007%252FBF02858558.pdf?originUrl=http%3A%2F%2Flink.springer.com%2Farticle%2F10.1007%2FBF02858558&token2=exp=149.
  • Md, S., A. K. M. Abdus, F. A. Mahabubuzzaman, and A. Ali. 2016. Investigation of the physical properties of jute blended yarn using a novel approach in spinning process. Journal of Textile Science and Technology 2:1–6. doi:10.4236/jtst.2016.21001.
  • Paridah, T., O. A. Ahmed Amel, S. Syeed, and A. Zakiah. 2011. Retting process of some bast plant fibres and its effect on fibre quality: A review. BioResources 6 (4):5260–81.
  • Rai, S., M. Hosssain, and F. Hossain. 2012. Evaluation of Okra [Abelmoscltus Esculentus (Moench) L.] as Bast Fibre Crop. Journal of Crop and Weed 8 (1):101–04.
  • Sahlberg, U., L. Salmén, and A. Oscarsson. 1997. The fibrillar orientation in the S2-layer of wood fibres as determined by X-Ray diffraction analysis. Wood Science and Technology 1997 31:2 31(2):77–86. Springer. doi:10.1007/BF00705923.
  • Sailesh, A., R. Arunkumar, and S. Saravanan. 2018. Mechanical properties and wear properties of Kenaf - Aloe Vera - jute fiber reinforced natural fiber composites. Materials Today: Proceedings 5(2):7184–90. Elsevier Ltd. doi:10.1016/j.matpr.2017.11.384.
  • Saville, B. P. 1999. “Physical ageing of textiles.” Woodhead Publishing, 145–47. https://app.knovel.com/hotlink/pdf/id:kt003HTDL3/physical-testing-textiles/bundle-strengthBT-PhysicalTestingofTextiles.
  • Sen, K. K., S. C. Saha, and P. K. Ray. 1987. Physical and structural properties of raw and alkali-treated Bhindi (Hibiscus Esculentus L) fibre. Indian Journal of Textile Research 12 (3):152–53.
  • Sinha, P. K. 2006. Composite Materials and Structures. Kharagpur: Composite Centre of Excellence, AR & DB, Department of Aerospace Engineering I.I.T. Kharagpur. http://www.ae.iitkgp.ac.in/ebooks/.
  • Surendra, I. V., K. Venkateswara Rao, and K. V. P. P. Chandu. 2015. Fabrication and investigation of mechanical properties of sisal, jute & okra natural fiber reinforced hybrid polymer composites. International Journal of Engineering Trends and Technology 19 (2):116–20. doi:10.14445/22315381/ijett-v19p220.
  • Tripathi, K. K., R. Warrier, O. P. Govila, and V. Ahuja. 2011. Biology of abelmoschus esculentus L. (Okra). Ministry of Environment and Forests, Government of India, New Delhi. https://biosafety.icar.gov.in/wp-content/uploads/2015/11/Biology_of_Okra1.pdf.
  • Vanishree, S., and G. Mahale. 2016. Influence Influence Of wet processing on physico-chemical properties of okra bast fibre.
  • Varmudy, V. 2011. Need to boost okra exports. Facts for You 31 (5):21–23.
  • Virk, A. S., W. Hall, and J. Summerscales. 2009. Tensile properties of jute fibres. Materials Science and Technology 25 (10):1289–95. doi:10.1179/174328408X385818.
  • Waliszewska, B., M. Mleczek, M. Zborowska, P. Goliński, P. Rutkowski, and K. Szentner. 2019. Changes in the chemical composition and the structure of cellulose and lignin in elm wood exposed to various forms of arsenic. Cellulose 26 (10):6303–15. doi:10.1007/s10570-019-02511-z.

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.