371
Views
2
CrossRef citations to date
0
Altmetric
Research Article

Investigation of Thermal Conductivity and Sound Absorption Properties of Rice Straw Fiber/Polylactic Acid Biocomposite Material

ORCID Icon, ORCID Icon & ORCID Icon
Pages 15071-15084 | Published online: 18 May 2022

References

  • Agirgan, M. 2020. Investigation of thermal, mechanical and acoustic properties of rice straw fiber reinforced polylactic acid matrixed biodegradable composite material. A thesis submitted to The University of Trakya for the degree of Doctor of Institute of Natural Sciences Department of Mechanical Engineering.
  • Agirgan, M., and V. Taskin. 2020. Nonwoven production from waste rice straw by using enzymatic method. Journal of Natural Fibers 1-7:979–85. doi:10.1080/15440478.2018.1546637.
  • Akonda, M., S. Alimuzzaman, D. U. Shah, and A. N. M. Masudur Rahman. 2018. Physicomechanical, thermal and biodegradation performance of random flax/polylactic acid and unidirectional flax/polylactic acid biocomposites. Fibers 6:98. doi:10.3390/fib6040098.
  • Ali, M., A. Alabdulkarem, A. Nuhait, K. Al-Salem, R. Almuzaiqer, O. Bayaquob, H. Salah, A. Alsaggaf, and Z. Algafri. 2020. Thermal analyses of loose agave, wheat straw fibers and agave/wheat straws new hybrid thermal insulating materials for buildings. Journal of Natural Fibers. doi:10.1080/15440478.2020.1724232.
  • Alimuzzaman, S. 2013. Nonwoven flax fibre reinforced PLA biodegradable composites. A thesis submitted to The University of Manchester for the degree of Doctor of Philosophy in the Faculty of Engineering and Physical Sciences.
  • Arumugam, V., R. Mishra, J. Militky, and J. Novak. 2015. Thermo-acoustic behavior of 3D knitted spacer fabrics. Fibers and Polymers 16 (11):2467–76. doi:10.1007/s12221-015-5602-5.
  • Asaithambi, B., G. Ganesan, and S. A. Kumar. 2014. Bio-composites: development and mechanical characterization of banana/sisal fibre reinforced poly lactic acid (PLA) hybrid composites. Fibers and Polymers 15 (4):847–54. doi:10.1007/s12221-014-0847-y.
  • Barczewski, M., O. Mysiukiewicz, D. Matykiewicz, A. Klozinski, J. Andrzejewski, and A. Piasecki. 2020. Synergistic effect of different basalt fillers and annealing on the structure and properties of polylactide composites. Polymer Testing 89:106628. doi:10.1016/j.polymertesting.2020.106628.
  • Behzad, T., and M. Sain. 2007. Finite element modeling of polymer curing in natural fiber reinforced composites. Composites Science and Technology 67 (7–8):1666–73. doi:10.1016/j.compscitech.2006.06.021.
  • Binici, H., O. Aksogan, and C. Demirhan. 2016. Mechanical, thermal and acoustical characterizations of an insulation composite made of bio-based materials. Sustainable Cities and Society 20:17–26. doi:10.1016/j.scs.2015.09.004.
  • Binici, H., M. Eken, M. Dolaz, O. Aksogan, and M. Kara. 2014. An environmentally friendly thermal insulation material from sunflower stalk, textile waste and stubble fibres. Construction and Building Materials 51:24–33. doi:10.1016/j.conbuildmat.2013.10.038.
  • Briga-Sá, A., D. Nascimento, N. Teixeira, J. Pinto, F. Caldeira, H. Varum, and A. Paiva. 2013. Textile waste as an alternative thermal insulation building material solution. Construction and Building Materials 38:155–60. doi:10.1016/j.conbuildmat.2012.08.037.
  • Chen, K., X. J. Li, Y. Q. Wu, and Y. F. Zuo. 2021. Preparation and properties of straw fiber/polylactic acid composites. Materials Science Forum 1036:122–29. www.scientific.net/msf.1036.122.
  • Chen, J. J., H. Q. Yu, Z. Guo, J. Z. You, and W. F. Song. 2015. On sound absorption and thermal properties of nonwovens. Thermal Science 19 (4):1470–72. doi:10.2298/TSCI1504470C.
  • Dungani, R., M. Karina, S. Subyakto, A. Sulaeman, and D. Hermawan. 2016. Agricultural waste fibers towards sustainability and advanced utilization: A review. Asian Journal of Plant Science 15:42–55. doi:10.3923/ajps.2016.42.55.
  • Durden, D., J. N. Etters, A. K. Sarkar, L. A. Henderson, and J. E. Hill. 2001. Advances in commercial bio preparation of cotton with alkaline pectinase. AATCC Rev 1:28–31.
  • Etters, J. N., A. K. Sarkar, L. A. Henderson, and J. Liu. 2001. The influence of bio preparation of cotton with alkaline pectinase on dyeing properties. AATCC Rev 1:22–24.
  • Eyüpoğlu, S., H. Dayıoğlu, N. Merdan, and M. Kılınç. 2018. The investigation of air, heat and sound permeability of perlite coated nonwoven fabrics with different weights. The Online Journal of Science and Technology 8 (2):124-128.
  • Foulk, J. A., Y. W. Chao, D. E. Akin, R. B. Dodd, and P. A. Layton. 2004. Enzyme-retted flax fiber and recycled polyethylene composites. Journal of Polymers and the Environment 12 (3):165–71. doi:10.1023/B:JOOE.0000038548.73494.59.
  • Gokulkumar, R., P. R. Thyla, L. Prabhu, and S. Sathish. 2020. Measuring methods of acoustic properties and influence of physical parameters on natural fibers: a review. Journal of Natural Fibers 17 (12):1719–38. doi:10.1080/15440478.2019.1598913.
  • Gomes, A., T. Matsuo, K. Goda, and J. Ohji. 2007. Development and effect of alkali treatment on tensile properties of curova fiber green composites. Composites - Part A: Applied Science and Manufacturing 38:1811–20. doi:10.1016/j.compositesa.2007.04.010.
  • Hongwei, M., and C. W. Joo. 2010. Structure and mechanical properties of jute–polylactic acid biodegradable composites. Journal of Composite Materials 45 (14):1451–60. .
  • Korjenic, A., V. Petránek, J. Zach, and J. Hroudová. 2011. Development and performance evaluation of natural thermal-insulation materials composed of renewable resources. Energy and Buildings 43 (9):2518–23. doi:10.1016/j.enbuild.2011.06.012.
  • Lee, H. P., M. P. Ng Benson, A. V. Rammohan, and L. Q. N. Tran. 2017. An investigation of the sound absorption properties of flax/epoxy composites compared with glass/epoxy composites. Journal of Natural Fibers 14 (1):71–77. doi:10.1080/15440478.2016.1146643.
  • Li, W., L. Zheng, D. T. D. Ge, F. Xu, and F. Xu. 2020. Interfacial modified unidirectional wheat straw/polylactic acid composites. Journal of Industrial Textiles journals.sagepub.com/home/jit, 152808372091817. doi:10.1177/1528083720918172.
  • Mittal, V., R. Saini, and S. Sinha. 2016. Natural fiber-mediated epoxy composites – A review. Composites Part B: Engineering 99:425–35. doi:10.1016/j.compositesb.2016.06.051.
  • Mofokeng, J. P., A. S. Luyt, T. J. Ta´bi, and C. S. Kova. 2011. Comparison of injection moulded, natural fibre reinforced composites with PP and PLA as matrices.”. Journal of Thermoplastic Composite Materials. doi:10.1177/0892705711423291.
  • Mohamed, G. R., R. K. Mahmoud, I. S. Fahim, M. Shaban, H. M. Abd El-Salam, and H. M. Mahmoud. 2021. Bio-composite thermal insulation materials based on banana leaves fibers and polystyrene: physical and thermal performance. Journal of Natural Fibers 1–16. doi:10.1080/15440478.2020.1870628.
  • Mohnen, D. 2008. Pectin structure and biosynthesis. Current Opinion in Plant Biology 11:266–77. doi:10.1016/j.pbi.2008.03.006.
  • Ouajai, S., A. Hodzic, and R. A. Shanks. 2004. Morphological and graffing and modification of natural cellulose fibers. Journal of Applied Polymer Science 94 (6):2456–65. doi:10.1002/app.21191.
  • Peltola, H. 2010. Lignin-compatibilized biocomposites”, VTT technical research centre of finland. Developments in Advanced Biocomposites. 49–54.
  • Preza, J. D., A. Willem, V. Vuureb, J. Ivensb, G. Aertsa, and V. Voordea. 2018. Enzymatic treatment of flax for use in composites. Biotechnology Reports 20. doi:10.1016/j.btre.2018.e00294.
  • Ridley, B. L., M. A. O’Neill, and D. Mohnen. 2001. Pectins: Structure, biosynthesis, and oligogalacturonide-related signaling. Phytochemistry 57:929–67. doi:10.1016/s0031-9422(01)00113-3.
  • Samanta, K. K., I. Mustafa, S. Debnath, G. B. Esha Das, and S. K. Ghosh. 2021. Study of thermal insulation performance of layered jute nonwoven: a sustainable material. Journal of Natural Fibers. doi:10.1080/15440478.2020.1856274.
  • Shikui, J., D. Yu, Y. Zhu, Z. Wang, C. Ligui, and F. Lei. 2017. Morphology, crystallization and thermal behaviors of PLA-based composites: wonderful effects of hybrid GO/PEG via dynamic impregnating. Polymers 9:528. www.mdpi.com/journal/polymers. doi:10.3390/polym9100528.
  • Tahir, P., A. B. Ahmed, S. O. A. Saifulazry, and Z. Ahmed. 2011. Retting process of some bast plant fibres and its effect on fibre quality: A review. BioResources 6:5260–81.
  • Vink, E., R. K. Rabago, D. Glassner, and P. Gruber. 2003. Applications of life cycle assessment to Nature Works TM polylactide (PLA) production. Degradation and Stability 80:403. doi:10.1016/S0141-3910(02)00372-5.
  • Wei, K., C. Lv, M. Chen, X. Zhou, Z. Dai, and D. Shen. 2015. Development and performance evaluation of a new thermal insulation material from rice straw using high frequency hot-pressing. Energy and Buildings 87 (1):116–22. doi:10.1016/j.enbuild.2014.11.026.
  • Zhandi, A., A. Zanganeh, F. Hemmati And, and J. M. Roshandeh. 2019. Thermal and biodegradation properties of poly (lactic acid) /rice straw composites: Effects of modified pulping products. Iranian Polymer Journal 28:403–15. doi:10.1007/s13726-019-00709-3.
  • Zhao, Y., J. Qiu, H. Feng, M. Zhang, L. Lei, and X. Wu. 2011. Improvement of tensile and thermal properties of poly(lactic acid) composites with admicellar-treated rice straw fiber. Chemical Engineering Journal 173:659–66. doi:10.1016/j.cej.2011.07.076.

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.