315
Views
51
CrossRef citations to date
0
Altmetric
Articles

Physicochemical properties of new cellulosic fiber extracted from Carica papaya bark

, , , &

References

  • Arthanarieswaran, V. P., A. Kumaravel, and S. S. Saravanakumar. 2015a. Characterization of new natural cellulosic fiber from Acacia leucophloea bark. International Journal of Polymer Analysis and Characterization 20:367–76.
  • Arthanarieswaran, V. P., A. Kumaravel, and S. S. Saravanakumar. 2015b. Physico-chemical properties of alkali-treated Acacia leucophloea fibers. International Journal of Polymer Analysis and Characterization 20:704–13.
  • Baskaran, P. G., M. Kathiresan, P. Senthamaraikannan, and S. S. Saravanakumar. 2017. Characterization of new natural cellulosic fiber from the bark of dichrostachys cinerea. Journal of Natural Fibers. doi:10.1080/15440478.2017.1304314.
  • Canetta, E., K. Montiel, and A. K. Adya. 2009. Morphological changes in textile fibres exposed to environmental stresses: Atomic force microscopic examination. Forensic Science International 191:6–14.
  • Fiore, V., T. Scalici, and A. Valenza. 2014. Characterization of a new natural fiber from Arundo donax L. as potential reinforcement of polymer composites. Carbohydrate Polymers 106:77–83.
  • Gassan, J., A. Chate, and A. K. Bledzki. 2001. Calculation of elastic properties of natural fibers. Journal of Materials Science 36:3715–20.
  • George, M., P. G. Mussone, Z. Abboud, and D. C. Bressler. 2014. Characterization of chemically and enzymatically treated hemp fibres using atomic force microscopy and spectroscopy. Applied Surface Science 314:1019–25.
  • Gopinath, R., K. Ganesan, S. S. Saravanakumar, and R. Poopathi. 2016. Characterization of new cellulosic fiber from the stem of Sida rhombifolia. International Journal of Polymer Analysis and Characterization 21:123–29.
  • Indran, S., R. Edwin Raj, and V. S. Sreenivasan. 2014. Characterization of new natural cellulosic fiber from Cissus quadrangularis root. Carbohydrate Polymers 110:423–29.
  • Kalia, S., B. S. Kaith, and I. Kaur. 2009. Pretreatments of natural fibers and their application as reinforcing material in polymer composites—A review. Polymer Engineering & Science 49:1253–72.
  • Kempe, A., T. Lautenschläger, A. Lange, and C. Neinhuis. 2014. How to become a tree without wood–Biomechanical analysis of the stem of Carica papaya L. Plant Biology 16:264–71.
  • Kommula, V. P., K. Obi Reddy, M. Shukla, T. Marwala, E. V. Subba Reddy, and A. Varada Rajulu. 2016. Extraction, modification, and characterization of natural ligno-cellulosic fiber strands from napier grass. International Journal of Polymer Analysis and Characterization 21:18–28.
  • Kommula, V. P., K. Obi Reddy, M. Shukla, T. Marwala, and A. Varada Rajulu. 2013. Physico-chemical, tensile, and thermal characterization of Napier grass (native African) fiber strands. International Journal of Polymer Analysis and Characterization 18:303–14.
  • Kumar, R., N. Rajesh Jesudoss Hyness, P. Senthamaraikannan, S. S. Saravanakumar, and M. R. Sanjay. 2017. Physico-chemical and thermal properties of Ceiba pentandra bark fiber. Journal of Natural Fibers. doi:10.1080/15440478.2017.1369208.
  • Madhu, P., M. R. Sanjay, P. Senthamaraikannan, S. Pradeep, S. S. Saravanakumar, and B. Yogesha. 2017. A review on synthesis and characterization of commercially available natural fibers: Part-II. Journal of Natural Fibers. doi:10.1080/15440478.2017.1379045.
  • Maepa, C. E., J. Jayaramudu, J. O. Okonkwo, S. S. Ray, E. R. Sadiku, and J. Ramontja. 2015. Extraction and characterization of natural cellulose fibers from maize tassel. International Journal of Polymer Analysis and Characterization 20:99–109.
  • Maheshwaran, M. V., N. Rajesh Jesudoss Hyness, P. Senthamaraikannan, S. S. Saravanakumar, and M. R. Sanjay. 2017. Characterization of natural cellulosic fiber from epipremnum aureum stem. Journal of Natural Fibers. doi:10.1080/15440478.2017.1364205.
  • Manimaran, P., M. Prithiviraj, S. S. Saravanakumar, V. Arthanarieswaran, and P. Senthamaraikannan. 2017. Physicochemical, tensile and thermal characterization of new natural cellulosic fibers from the stem of Sida cordifolia. Journal of Natural Fibers. doi:10.1080/15440478.2017.1376301.
  • Mayandi, K., N. Rajini, P. Pitchipoo, J. T. Winowlin Jappes, and A. Varada Rajulu. 2016. Extraction and characterization of new natural lignocellulosic fiber Cyperus pangorei. International Journal of Polymer Analysis and Characterization 21:175–83.
  • NagarajaGanesh, B., and R. Muralikannan. 2016. Extraction and characterization of lignocellulosic fibers from Luffa cylindrica fruit. International Journal of Polymer Analysis and Characterization 21:259–66.
  • Odera, R. S., O. D. Onukwuli, and C. U. Atuanya. 2015. Characterization of the thermo-microstructural analysis of Raffia Palm fibers proposed for roofing sheet production. Journal of Minerals and Materials Characterization and Engineering 3:335–43.
  • Olsson, A. M., and L. Salmen. 2004. The association of water to cellulose and hemicellulose in paper examined by FTIR spectroscopy. Carbohydrate Research 339:813–18.
  • Rajesh Jesudoss Hyness, N., N. J. Vignesh, P. Senthamaraikannan, S. S. Saravanakumar, and M. R. Sanjay. 2017. Characterization of new natural cellulosic fiber from Heteropogon contortus plant. Journal of Natural Fibers. doi:10.1080/15440478.2017.1321516.
  • Reddy, K. O., C. Uma Maheswari, E. Muzenda, M. Shukla, and A. Varada Rajulu. 2016. Extraction and characterization of cellulose from pretreated ficus (Peepal tree) leaf fibers. Journal of Natural Fibers 13:54–64.
  • Rwawiire, S., and B. Tomkova. 2015. Morphological, thermal, and mechanical characterization of Sansevieria trifasciata fibers. Journal of Natural Fibers 12:201–10.
  • Saravanakumar, S. S., A. Kumaravel, T. Nagarajan, and I. Ganesh Moorthy. 2014. Effect of chemical treatments on physicochemical properties of Prosopis juliflora fibers. International Journal of Polymer Analysis and Characterization 19:383–90.
  • Saravanakumar, S. S., A. Kumaravel, T. Nagarajan, P. Sudhakar, and R. Baskaran. 2013. Characterization of a novel natural cellulosic fiber from Prosopis juliflora bark. Carbohydrate Polymers 92:1928–33.
  • Sarikanat, M., Y. Seki, K. Sever, and C. Durmuşkahya. 2014. Determination of properties of Althaea officinalis L. (Marshmallow) fibres as a potential plant fibre in polymeric composite materials. Composites Part B: Engineering 57:180–86.
  • Sathishkumar, T. P., P. Navaneethakrishnan, S. Shankar, and R. Rajasekar. 2013. Characterization of new cellulose sansevieria ehrenbergii fibers for polymer composites. Composite Interfaces 20:575–93.
  • Senthamaraikannan, P., S. S. Saravanakumar, V. P. Arthanarieswaran, and P. Sugumaran. 2016. Physico-chemical properties of new cellulosic fibers from the bark of Acacia planifrons. International Journal of Polymer Analysis and Characterization 21:207–13.
  • Suryanto, H., E. Marsyahyo, Y. S. Irawan, and R. Soenoko. 2014. Morphology, structure, and mechanical properties of natural cellulose fiber from mendong grass (Fimbristylis globulosa). Journal of Natural Fibers 11:333–51.
  • Venkatachalam, N., P. Navaneethakrishnan, and T. P. Sathishkumar. 2016. Characterization of novel Passiflora foetida natural fibers for paper board industry. Journal of Industrial Textiles. doi:10.1177/1528083716682923.

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.