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Original Articles

Morphological, Thermal, and Mechanical Characterization of Sansevieria trifasciata Fibers

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REFERENCES

  • Alemdar, A., and M. Sain. 2008. Biocomposites from wheat straw nanofibers: Morphology, thermal and mechanical properties. Composites Science and Technology 68(2): 557–565.
  • Alhuthali, A., I. M. Low, and C. Dong. 2012. Characterisation of the water absorption, mechanical and thermal properties of recycled cellulose fibre reinforced vinyl-ester eco-nanocomposites. Composites Part B: Engineering 43(7): 2772–2781.
  • AlMaadeed, M. A., R. Kahraman, P. Noorunnisa Khanam, and S. Al-Maadeed. 2013. Characterization of untreated and treated male and female date palm leaves. Materials and Design 43, 526–531.
  • Ayalogu, E. O., C. C. Ikewuchi, E. N. Onyeike, J. C. Ikewuchi, and J. Ikewuchi. 2011. Effects of an aqueous leaf extract of Sansevieria senegambica Baker on plasma biochemistry and haematological indices of salt-loaded rats. South African Journal of Science 107(11/12) 1–5.
  • Basu, G., A. N. Roy, K. K. Satapathy, S. M. J. Abbas, L. Mishra, and R. Chakraborty. 2012. Potentiality for value-added technical use of Indian sisal. Industrial Crops and Products 36(1): 33–40.
  • Biagiotti, J., D. Puglia, L. Torre, J. M. Kenny, A. Arbelaiz, G. Cantero and I. Mondragon. 2004. A systematic investigation on the influence of the chemical treatment of natural fibers on the properties of their polymer matrix composites. Polymer Composites 25(5): 470–479.
  • Chinasa, E. C., I. A. S. Ifeoma, E. C. Obodoike, and E. S. Chhukwuemeka. 2011. Evaluation of anti-inflammatory property of the leaves of Sansevieria liberica ger. and labr. (fam: dracaenaceae). Asian Pacific Journal of Tropical Medicine 4(10): 791–795.
  • de Almeida, P., and P. D. Silva. 2011. Timing and future consequences of the peak of oil production. Futures 43(10): 1044–1055.
  • Dittenber, D. B., and H. V. GangaRao. 2012. Critical review of recent publications on use of natural composites in infrastructure. Composites Part A: Applied Science and Manufacturing 43(8): 1419–1429.
  • Elanthikkal, S., U. Gopalakrishnapanicker, S. Varghese, and J. T. Guthrie. 2010. Cellulose microfibres produced from banana plant wastes: Isolation and characterization. Carbohydrate Polymers 80(3): 852–859.
  • Ho, M. P., H. Wang, J. H. Lee, C. K. Ho, K. T. Lau, J. Leng, and D. Hui. 2012. Critical factors on manufacturing processes of natural fibre composites. Composites Part B: Engineering 43(8): 3549–3562.
  • Ikewuchi, J. C., C. C. Ikewuchi, N. M. Igboh, and T. Mark-Balm. 2011. Protective effect of aqueous extract of the rhizomes of Sansevieria liberica Gérôme and Labroy on carbon tetrachloride induced hepatotoxicity in rats. EXCLI Journal 10: 312–321.
  • Kanimozhi, M. 2012. Investigating the Physical Characteristics of Sansevieria trifasciata Fibre. International Journal of Scientific and Research Publications 30: 1–4.
  • Koronis, G., A. Silva, and M. Fontul. 2012. Green composites: A review of adequate materials for automotive applications. Composites Part B: Engineering 44(1): 120–127.
  • Kumar Samanta, A., G. Basu, and P. Ghosh. 2008. Structural features of glycol and acrylamide treated jute fiber. Journal of Natural Fibers 5(4): 444–460.
  • La Mantia, F. P., and M. Morreale. 2011. Green composites: A brief review. Composites Part A: Applied Science and Manufacturing 42(6): 579–588.
  • Liu, W., A. K. Mohanty, L. T. Drzal, P. Askel, and M. Misra. 2004. Effects of alkali treatment on the structure, morphology and thermal properties of native grass fibers as reinforcements for polymer matrix composites. Journal of Materials Science 39(3): 1051–1054.
  • Mwaikambo, L. Y., and M. P. Ansell. 2002. Chemical modification of hemp, sisal, jute, and kapok fibers by alkalization. Journal of Applied Polymer Science 84(12): 2222–2234.
  • Nguyen, T., E. Zavarin, and E. M. Barrall. 1981. Thermal Analysis of Lignocellulosic Materials: Part I. Unmodified Materials. Journal of Macromolecular Science—Reviews in Macromolecular Chemistry 20(1): 1–65.
  • Roy, J., M. Kuddus, B. Begum, and H. Choudhury. 2012. Evaluation of analgesic, cytotoxic and antioxidant activities of Sansevieria roxburghiana Schult. and Schult. f. Asian Pacific Journal of Tropical Biomedicine 2(2): S723–S726.
  • Rwawiire, S., and Tomkova, B. (2014). Thermo-physiological and comfort properties of Ugandan barkcloth from Ficus natalensis. The Journal of The Textile Institute 105(6): 648–653.
  • Seki, Y., M. Sarikanat, K. Sever, and C. Durmuşkahya. 2013. Extraction and properties of Ferula communis (chakshir) fibers as novel reinforcement for composites materials. Composites Part B: Engineering 44(1): 517–523.
  • Sena Neto, A. R., M. A. Araujo, F. V. Souza, L. H. Mattoso, and J. M. Marconcini. 2013. Characterization and comparative evaluation of thermal, structural, chemical, mechanical and morphological properties of six pineapple leaf fiber varieties for use in composites. Industrial Crops and Products 43: 529–537.
  • Sikder, M. A. A., A. B. Siddique, A. K. M. N. Hossian, M. K. Miah, M. A. Kaisar, and M. A. Rashid. 2011. Evaluation of thrombolytic activity of four Bangladeshi medicinal plants, as a possible renewable source for thrombolytic compounds. Journal of Pharmacy and Nutrition Sciences 1: 4–8.
  • Sreenivasan, V. S., S. Somasundaram, D. Ravindran, V. Manikandan, and R. Narayanasamy. 2011. Microstructural, physico-chemical and mechanical characterisation of Sansevieria cylindrical fibres—An exploratory investigation. Materials & Design 32(1): 453–461.
  • Summerscales, J., N. P. Dissanayake, A. S. Virk, and W. Hall. 2010. A review of bast fibres and their composites. Part 1: Fibres as reinforcements. Composites Part A: Applied Science and Manufacturing, 41(10), 1329–1335.
  • Wolverton, B. C., A. Johnson, and K. Bounds. (1989). Interior landscape plants for indoor air pollution abatement. NASA/ALCA Final Report. Plants for Clean Air Council, Mitchellville, MD.

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