151
Views
8
CrossRef citations to date
0
Altmetric
Articles

Appropriate bleaching technique for coconut fiber

, &

References

  • Anto, I. R., P. K. Ravi, and U. S. Sarma. 1998. Studies on imparting softness to coir yarns. Workshop on wet processing of coir. Coir News 27 (3):19–28.
  • ASTM-D-1925. 1974. Annual book of ASTM standards. Philadelphia, Pennsylvania, USA: American Society for Testing and Materials, 225.
  • Basu, G., and S. N. Chattopadhyay. 1996. Ambient temperature bleaching of jute fibre-Its effect on yam properties and dyeing behaviour. Indian Journal of Fibre & Textile Research 21:217–22.
  • Basu, G., L. Mishra, S. Jose, and A. K. Samanta. 2015. Accelerated retting cum softening of coconut fibre. Industrial Crops and Production 77:66–73.
  • Box, G. E. P., and D. W. Behnken. 1960. Some new three level designs for the study of quantitative variable. Technometrics : a Journal of Statistics for the Physical, Chemical, and Engineering Sciences 2 (4):455–68.
  • Brígida, A. I. S., V. M. A. Calado, L. R. B. Gonçalves, and M. A. Z. Coelho. 2010. Effect of chemical treatments on properties of green coconut fiber. Carbohydrate Polymers 79:832–38.
  • Budett, B. C., and J. G. Robert. 1985. Journal of Society of Dyer Colourist 101:53.
  • Bulder, J. M., Amsterdam. 1958. Netherlands, assignor to N.V.A. maatschappij tot exploitatie Van Octrooien, United state patents US2857238, patented on 21.10.1958 serial no. 363,407. Process of removing tannic acid from coconut fibres with sodium hydrosuplhite and then bleaching the fibres.
  • Chambers, E. G. 1958. Statistical calculation for beginners, 37, 60–63,156–157. USA: Cambridge university press.
  • Hunter, R. S. 1975. Measurement of appearance, 174. USA, New York: Interscience Publisher.
  • IS: 6359-1971. 1972. Method for conditioning of textiles. India: New Delhi: Bureau of Indian Standards.
  • Mohanty, A. K., M. Misra, L. T. Drzal, S. E. Selke, B. R. Harte, and G. Hinrichsen. 2005. In Natural fibers, biopolymers, and bio-composites: An introduction in natural fibers, biopolymers and biocomposites, eds. A. K. Mohanty, M. Misra, and L. T. Drzal, 1−36. Boca Raton, FL: CRC Press, Taylor & Francis Group.
  • Park, S., J. O. Baker, M. E. Himmel, P. A. Parilla, and D. K. Johnson. 2010. Cellulose crystallinity index: Measurement techniques and their impact on interpreting cellulase performance. Biotechnology for Biofuels 3:1−10.
  • Ravindranath, A. D., and U. S. Sarma. 2010. Economical and ecofreindly wet processing of coir using Trametes versicolor and Coirret. Coir News 39:11–16.
  • Reddy, N., A. Salam, and Y. Yang. 2007. Effect of lignin on the heat and light resistance of lignocellulosic fibers. Macromolecular Materials and Engineering 292:458–66.
  • Rosa, M. F., B. Chiou, E. S. Medeiros, D. F. Wood, T. G. Williams, L. H. C. Mattoso, W. J. Orts, and S. H. Imam. 2009. Effect of fiber treatments on tensile and thermal properties of starch/ethylene vinyl alcohol copolymers/coir biocomposites. Bioresource Technology 100:5196–202.
  • Samanta, A. K., D. Singhee, G. Basu, and K. K. Mahalanabis. 2007. Hydrogen peroxide and pottasium per-oxo-disulphate combined room temperature bleaching of jute and jute cotton union fabrics – An energy –Efficient ecofriendly process. Indian Journal of Fibre and Textile Research 32:221–31.
  • Sreenivasan, S., P. B. Iyer, and K. R. Krishna Iyer. 1996. Influence of delignification and alkali treatment on the fine structure of coir fibres (Cocos Nucifera). Journal of Material Science 31:721–26.
  • Van Dam, J. E. G. 2002. COIR PROCESSING TECHNOLOGIES Improvement of drying, softening, bleaching and dyeing coir fibre/yarn and printing coir floor coverings, 7–27, 35. Netherland: Common Fund for Commodities.
  • Van Dam, J. E. G., M. J. A. Van den Oever, W. Teunissen, E. R. P. Keijsers, and A. G. Peralta. 2004. Process for production of high density high performance binderless boardsfrom whole coconut husk. Part 1: Lignin as intrinsic thermosetting binder resin. Industrail Crops and Products 19:207–216.
  • Washusen, R., and R. Evans. 2002. The measurement of cellulose crystallite width by x-ray diffraction of Silviscan-2 and its possible application in Eucalypt and Acacia species. In: Wood structure and properties 02, ed. J. Kudela, and S. Kurjatko, 7–12. Slovakia, Zvolen: Arbora publishers.

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.