109
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Optimization of Cellulose Extraction and TCF Bleaching from Olive Tree Pruning Residues by Box–Behnken Design

, , , &

References

  • Aguir, C., and M. F. M’Henni. 2006. Experimental Study on carboxymethylation of cellulose extracted from posidonia oceanica. Journal of Applied Polymer Science 99 (4):1808–16. doi:10.1002/app.22713.
  • Antunes, A., E. Amaral, and M. N. Belgacem. 2000. Cynara cardunculus L.: Chemical composition and soda-anthraquinone cooking. Industrial Crops and Products 12 (2):85–91. doi:10.1016/S0926-6690(00)00040-6.
  • Aseer, J. R., K. Sankaranarayanasamy, P. Jayabalan, R. Natarajan, and K. Priya Dasan. 2013. Morphological, physical, and thermal properties of chemically treated banana fiber. Journal of Natural Fibers 10 (4):365–80. doi:10.1080/15440478.2013.824848.
  • Biswas, A., S. Kim, G. W. Selling, and H. Cheng. 2014. Conversion of agricultural residues to carboxymethylcellulose and carboxymethylcellulose acetate. Industrial Crops and Products 60 (septembre):259–65. doi:10.1016/j.indcrop.2014.06.004.
  • Bono, A., P. H. Ying, F. Y. Yan, C. L. Muei, R. Sarbatly, and D. Krishnaiah. 2009. Synthesis and characterization of carboxymethyl cellulose from Palm Kernel cake. Advances in Natural and Applied Sciences 3 (1):5–12. http://link.galegroup.com/apps/doc/A235407182/AONE?sid=googlescholar.
  • Candido, R. G., and A. R. Goncalves. 2016. Synthesis of cellulose acetate and carboxymethylcellulose from sugarcane straw. Carbohydrate Polymers 152 (juillet):679–86. doi:10.1016/j.carbpol.2016.07.071.
  • Chand, N., and M. Fahim, ed. 2008. 1 - Natural fibers and their composites. In Tribology of natural fiber polymer composites, 1–58. Woodhead Publishing Series in Composites Science and Engineering. Woodhead Publishing. doi:10.1533/9781845695057.1.
  • Ek, M., J. Gierer, K. Jansbo, and R. Torbjörn. 1989. Study on the selectivity of bleaching with oxygen-containing species. Holzforschung 43 (décembre):391–96. doi:10.1515/hfsg.1989.43.6.391.
  • Graniti, A., R. Faedda, S. O. Cacciola, and G. M. di San Lio. 2011. Olive diseases in a changing ecosystem. Olive Diseases and Disorders janvier:403–33.
  • Hannachi, H., M. Msallem, S. B. Elhadj, and M. E. Gazzah. 2007. Influence du site géographique sur les potentialités agronomiques et technologiques de l’olivier (Olea europaea L.) en Tunisie. Comptes Rendus Biologies 330 (2):135–42. doi:10.1016/j.crvi.2006.11.005.
  • He, X., S. Wu, D. Fu, and J. Ni. 2009. Preparation of sodium carboxymethyl cellulose from paper sludge. Journal of Chemical Technology and Biotechnology 84 (3):427–34. doi:10.1002/jctb.2057.
  • Jia, F., H.-J. Liu, and G.-G. Zhang. 2016. Preparation of carboxymethyl cellulose from corncob. Procedia Environmental Sciences, Selected Proceedings of the Tenth International Conference on Waste Management and Technology 31 (Supplement C):98–102. doi:10.1016/j.proenv.2016.02.013.
  • Joglekar, A. M., and A. T. May. 1987. Product excellence through design of experiments. Cereal Foods World 32 (12):857.
  • Khiari, R., M. F. Mhenni, M. N. Belgacem, and E. Mauret. 2011. Valorisation of vegetal wastes as a source of cellulose and cellulose derivatives. Journal of Polymers and the Environment 19 (1):80–89. doi:10.1007/s10924-010-0207-y.
  • Khiari, R., M. F. Mhenni, N. Belgacem, and E. Mauret. 2009. Chemical composition and pulping of date palm rachis and Posidonia oceanica – A comparison with other wood and non-wood fibre sources. Bioresource Technology 101 (septembre):775–80. doi:10.1016/j.biortech.2009.08.079.
  • Khristova, P., O. Kordsachia, and T. Khider. 2005. Alkaline pulping with additives of date palm rachis and leaves from Sudan. Bioresource Technology 96 (1):79–85. doi:10.1016/j.biortech.2003.05.005.
  • Komuraiah, A., N. Kumar, and B. Prasad. 2014. Chemical composition of natural fibers and its influence on their mechanical properties. Mechanics of Composite Materials 50 (juillet):359–76. doi:10.1007/s11029-014-9422-2.
  • Lapierre, L., R. Berry, and J. Bouchard. 2003. The effect of magnesium ions and chelants on peroxide bleaching. Holzforschung 57 (janvier):627–33. doi:10.1515/HF.2003.094.
  • Le Troedec, M., D. Sedan, C. Peyratout, J. P. Bonnet, A. Smith, R. Guinebretiere, V. Gloaguen, and P. Krausz. 2008. Influence of various chemical treatments on the composition and structure of hemp fibres. Composites. Part A, Applied Science and Manufacturing 39 (3):514–22. doi:10.1016/j.compositesa.2007.12.001.
  • Mandal, A., and D. Chakrabarty. 2011. Isolation of nanocellulose from waste sugarcane bagasse (SCB) and its characterization. Carbohydrate Polymers 86 (3):1291–99. doi:10.1016/j.carbpol.2011.06.030.
  • Manzato, L., M. L. Takeno, W. A. G. Pessoa-Junior, L. A. M. Mariuba, J. Simonsen. 2018. Optimization of cellulose extraction from jute fiber by Box-Behnken Design. Fibers and Polymers 19 (2):289–96. doi:10.1007/s12221-018-1123-8.
  • Martín-García, B., S. Pimentel-Moral, A. M. Gómez-Caravaca, D. Arráez-Román, A. Segura-Carretero. 2020. Box-Behnken experimental design for a green extraction method of phenolic compounds from olive leaves. Industrial Crops and Products 154 (octobre):112741. doi:10.1016/j.indcrop.2020.112741.
  • Mastrantonio, G., L. Battaioto, C. Jones, M. Coustet, H. Chandi, and D. K. Yamul. 2015. Chemical conversion of paper industry effluents into carboxymethylcellulose. Process Safety and Environmental Protection 94 (Supplement C):315–21. doi:10.1016/j.psep.2014.07.005.
  • Öhman, L.-O. 1998. On the prevention of Fe- and Mn-catalyzed H2O2 decomposition under bleaching conditions. Journal of Pulp and Paper Science 24 (septembre):269–76.
  • Oluwasina, O. O., L. Lajide, and B. Owolabi. 2014. Microcrystalline cellulose from plant wastes through sodium hydroxide-anthraquinone-ethanol pulping. BioResources 9 (4):6166–92. doi:10.15376/biores.9.4.6166-6192.
  • Penjumras, P., R. B. Abdul Rahman, A. T. Rosnita, and K. Abdan. 2014. Extraction and characterization of cellulose from durian rind. Agriculture and Agricultural Science Procedia 2 (1):237. doi:10.1016/j.aaspro.2014.11.034.
  • Pushpamalar, V., S. J. Langford, M. Ahmad, and Y. Y. Lim. 2006. Optimization of reaction conditions for preparing carboxymethyl cellulose from sago waste. Carbohydrate Polymers 64 (2):312–18. doi:10.1016/j.carbpol.2005.12.003.
  • Sain, M., and S. Panthapulakkal. 2006. Bioprocess preparation of wheat straw fibers and their characterization. Industrial Crops and Products 23 (1):1–8. doi:10.1016/j.indcrop.2005.01.006.
  • Saunders, K. J. 1988. Cellulose and related polymers. In Organic polymer chemistry: An introduction to the organic chemistry of adhesives, fibres, paints, plastics and rubbers, ed. K. J. Saunders, 286–315. Dordrecht: Springer Netherlands. doi:10.1007/978-94-009-1195-6_13.
  • Sen, S., J. D. Martin, and D. S. Argyropoulos. 2013. Review of cellulose non-derivatizing solvent interactions with emphasis on activity in inorganic molten salt hydrates. ACS Sustainable Chemistry & Engineering 1 (8):858–70. doi:10.1021/sc400085a.
  • Singh, R. K., and A. K. Singh. 2013. Optimization of reaction conditions for preparing carboxymethyl cellulose from corn cobic agricultural waste. Waste and Biomass Valorization 4 (1):129–37. doi:10.1007/s12649-012-9123-9.
  • Stoica-Guzun, A., M. Stroescu, I. Jipa, L. Dobre, and T. Zaharescu. 2013. Effect of γ Irradiation on Poly(Vinyl Alcohol) and bacterial cellulose composites used as packaging materials. Radiation Physics and Chemistry, Proceedings of the Ninth Meeting of the Ionizing Radiation and Polymers Symposium (Irap 2010) 84 (mars):200–04. doi:10.1016/j.radphyschem.2012.06.017.
  • Sun, X. F., X. R. Feng, C. Sun, P. Fowler, and M. S. Baird. 2005. A. Mandal. Carbohydrate Research 340 (1):97–106. doi:10.1016/j.carres.2004.10.022.
  • Ünlü, C. H. 2013. Carboxymethylcellulose from recycled newspaper in aqueous medium. Carbohydrate Polymers 97 (1):159–64. doi:10.1016/j.carbpol.2013.04.039.
  • Varshney, V. K., and S. Naithani. 2011. Chemical functionalization of cellulose derived from nonconventional sources. In Cellulose fibers: Bio- and nano-polymer composites, 43–60. Berlin, Heidelberg: Springer. doi:10.1007/978-3-642-17370-7_2.
  • Wise, L. E., M. Murphy, et A. a. D. Adieco. 1946. Chlorite holocellulose, its fractionation and bearing on summative wood analysis and on studies on the hemicelluloses . Paper Trade 122: 35‑43
  • Wuorimaa, A., R. Jokela, and R. Aksela. 2006. Recent developments in the stabilization of hydrogen peroxide bleaching of pulps: An overview. Nordic Pulp & Paper Research Journal 21 (4):435–43. doi:10.3183/npprj-2006-21-04-p435-443.
  • Ziaie-Shirkolaee, Y., A. Talebizadeh, and S. Soltanali. 2008. Comparative study on application of T.Lanuginosus SSBP xylanase and commercial xylanase on biobleaching of non wood pulps. Bioresource Technology 99 (16):7433–37. doi:10.1016/j.biortech.2008.02.032.
  • Zuluaga, R., J. L. Putaux, J. Cruz, J. Vélez, I. Mondragon, and P. Gañán. 2009. Cellulose microfibrils from banana rachis: Effect of alkaline treatments on structural and morphological features. Carbohydrate Polymers 76 (1):51–59. doi:10.1016/j.carbpol.2008.09.024.

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.