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Research Article

Characterization of Wheat Straw Fiber Grown Around Jimma Zone, ETHIOPIA

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References

  • Abate, D. 2018. Review on market chain analysis of wheat in Ethiopia. The International Journal of Business Management and Technology. 2 (94–105):12.
  • Ahmed, T., M. U. Farooqi, and M. Ali. 2020. Compressive behavior of rice straw-reinforced concrete for rigid pavements. IOP Conference Series: Materials Science and Engineering 770 (1):012004. doi:10.1088/1757-899X/770/1/012004.
  • Aklilu, E. G. 2020. Optimization and modeling of ethanol–alkali pulping process of bamboo (Yushania Alpina) by response surface methodology. Wood Science and Technology 54 (5):1319–10. doi:10.1007/s00226-020-01188-z.
  • Bernardo, J., F. Gírio, and R. Łukasik. 2019. The effect of the chemical character of ionic liquids on biomass pre-treatment and posterior enzymatic hydrolysis. Molecules 24 (4):808. doi:10.3390/molecules24040808.
  • Cai, J.-W., Z. Li, S.-J. Yan, and J. Li. 2017. Effect of straw fiber content on properties of cement-based composite. DEStech Transactions on Engineering and Technology Research 961–66. doi:10.12783/dtetr/apetc2017/11109.
  • Capital University of Science and Technology – Islamabad, Pakistan, Muhammad Usman Farooqi, Majid Ali, and Capital University of Science and Technology – Islamabad, Pakistan. 2016. Compressive behavior of wheat straw reinforced concrete for pavement applications. 707–16. doi: 10.18552/2016/SCMT4S231.
  • Chen, J., E. Mohamed, A. Elbashiry, T. Yu, Y. Ren, Z. Guo, and S. Liu. 2018. Research progress of wheat straw and rice straw cement-based building materials in China. Magazine of Concrete Research 70 (2):84–95. doi:10.1680/jmacr.17.00064.
  • El-Abbassi, F. E., M. Assarar, R. Ayad, A. Bourmaud, and C. Baley. 2020. A review on alfa fibre (Stipa Tenacissima L.): From the plant architecture to the reinforcement of polymer composites. Composites: Part A, Applied Science and Manufacturing 128 (January):105677. doi:10.1016/j.compositesa.2019.105677.
  • El-Fattah, A. A., A. G. M. EL Demerdash, W. A. Alim Sadik, and A. Bedir. 2015. The effect of sugarcane bagasse fiber on the properties of recycled high density polyethylene. Journal of Composite Materials 49 (26):3251–62. doi:10.1177/0021998314561484.
  • Fang, G., and K. Shen. 2018. Wheat straw pulping for paper and paperboard production. In Global wheat production, ed. S. Fahad, A. Basir, and M. Adnan, 223–39. InTech. doi: 10.5772/intechopen.77274.
  • Farooqi, M. U., and M. Ali. 2016. Construction practices for first ever wheat straw reinforced concrete pavement for light traffic. In 374–83. Las Vegas, USA. doi:10.18552/2019/IDSCMT5169.
  • Geremew, A., P. De Winne, T. Adugna, and H. de Backer. 2021. An overview of the characterization of natural cellulosic fibers. Key Engineering Materials 881 (April):107–16. www.scientific.net/KEM.881.107
  • Geremew, A., P. De Winne, T. A. Demissie, and H. De Backer. 2021. Treatment of natural fiber for application in concrete pavement. Edited by Chunshun Zhang. Advances in Civil Engineering 2021 (February):1–13. doi:10.1155/2021/6667965.
  • Huang, Q., D. Lei, J. Wang, Y. Yang, and N. Bao. 2015. Research on the application of straw in rural buildings. In Proceedings of the 2015 International Conference on Architectural, Civil and Hydraulics Engineering, 432–36, Guangzhou City, China: Atlantis Press. doi:10.2991/icache-15.2015.83.
  • Hyness, N. R. J., N. J. Vignesh, P. Senthamaraikannan, S. S. Saravanakumar, and M. R. Sanjay. 2018. Characterization of new natural cellulosic fiber from heteropogon contortus plant. Journal of Natural Fibers 15 (1):146–53. doi:10.1080/15440478.2017.1321516.
  • Islam, S., S. Islam, and M. Hasan. 2022. Natural fiber reinforced polymer composites as sustainable green composites. In Encyclopedia of materials: Plastics and polymers, 987–96. Elsevier. doi:10.1016/B978-0-12-820352-1.00257-1.
  • Jiang, D., P. An, S. Cui, S. Sun, J. Zhang, and T. Tuo. 2020. Effect of modification methods of wheat straw fibers on water absorbency and mechanical properties of wheat straw fiber cement-based composites. Advances in Materials Science and Engineering 2020 February:1–14. doi:10.1155/2020/5031025.
  • Kasmani, J. E., and A. Samariha. 2011. Some chemical and morphological properties of wheat straw. 8 (4):823–25. doi:10.1021/mp100433c.
  • Liu, R., H. Yu, and Y. Huang. 2005. Structure and morphology of cellulose in wheat straw. Cellulose 12:25–34. doi:10.1007/s10570-004-0955-8.
  • Manzanares, P. 2020. The role of biorefinering research in the development of a modern bioeconomy. Acta Innovations 37 (December):47–56. doi:10.32933/ActaInnovations.37.4.
  • Maria, D., and D. L. Manea. 2015. Using wheat straw in construction. PROENVIRONMENT . 8:17–23.
  • Meyer, G., V. Okudoh, and E. van Rensburg. 2022. A rumen based anaerobic digestion approach for lignocellulosic biomass using barley straw as feedstock. South African Journal of Chemical Engineering 41 (July):98–104. doi:10.1016/j.sajce.2022.05.005.
  • Morais, A. R. C., M. D. D. J. Matuchaki, J. Andreaus, and R. Bogel-Lukasik. 2016. A green and efficient approach to selective conversion of xylose and biomass hemicellulose into furfural in aqueous media using high-pressure CO 2 as a sustainable catalyst. Green Chemistry 18 (10):2985–94. doi:10.1039/C6GC00043F.
  • Morone, P., and G. Yilan. 2020. A paradigm shift in sustainability: From lines to circles. Acta Innovations 36 (September):5–16. doi:10.32933/ActaInnovations.36.1.
  • Sain, M., and A. Alemdar. 2006. Biodegradable nanocomposites from wheat straw. In AIChE Annual Meeting. San Francisco, CA, 632B.
  • Sanjay, M. R., G. R. Arpitha, L. Laxmana Naik, K. Gopalakrishna, and B. Yogesha. 2016. Applications of natural fibers and its composites: An overview. Natural Resources 07 (03):108–14. doi:10.4236/nr.2016.73011.
  • Singh Dhaliwal, J. 2020. Natural fibers: Applications. In Generation, development and modifications of natural fibers, ed. M. Abbas and H.-Y. Jeon. IntechOpen. doi:10.5772/intechopen.86884.
  • Tesfaye, G., A. Belete, F. Syrowatka, R. H. H. Neubert, and T. Gebre-Mariam. 2020. Extraction and characterization of celluloses from various plant byproducts. International Journal of Biological Macromolecules 158 (September):1248–58. doi:10.1016/j.ijbiomac.2020.04.264.