The Mechanical and it Combined with Enzymatic Preparation Methods of Microfibrillated Cellulose

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Abstract:

Microfibrillated cellulose (short for MFC) has rapidly advanced due to its unique nano-order-unit web-like network structure and such special properties as extremely high strength, large specific surface area and high aspect ratio. In the present paper, the processing technology and the research progress of the preparation methods of MFC with mechanical and it combined with enzymatic treatment are briefly reviewed, then the four main challenges about preparation of MFC are figured out. In the last section, the direction of this research field is also highlighted.

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Advanced Materials Research (Volumes 87-88)

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393-397

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December 2009

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© 2010 Trans Tech Publications Ltd. All Rights Reserved

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[1] D. Klemm, B. Heublein, H.P. Fink, et al: Angew Chem. Int. Ed. Vol. 44 (2005), pp.2-37.

Google Scholar

[2] T. Nishino, K. Takano and K.J. Nakamae: Polym. Sci. B Vol. 33 (1995), pp.1647-1651.

Google Scholar

[3] M.A.S. Azizi-Samir, F. Alloin, M. Paillet, et al: Macromolecules Vol. 37 (2004), pp.4313-4316.

DOI: 10.1021/ma035939u

Google Scholar

[4] A.N. Nakagaito and H. Yano: Appl. Phys. A: Mater. Sci. Process Vol. 80 (2005), pp.155-159.

Google Scholar

[5] A.F. Turbak, F.W. Snyder and K.R. Sandberg: J. Appl. Polym. Sci.: Appl. Polym. Symp. Vol. 37 (1983), pp.815-827.

Google Scholar

[6] F.W. Herrick, R.L. Casebier, J.K. Hamilton, et al: J. Appl. Polym. Sci.: Appl. Polym. Symp. Vol. 37 (1983), pp.797-813.

Google Scholar

[7] X.S. Huang and A. Netravali: Compos. Sci. Technol. Vol. 69 (2009), pp.1009-1015.

Google Scholar

[8] Y. Habibi, M. Mahrouz and M.R. Vignon: Food Chem. Vol. 115 (2009), pp.423-429.

Google Scholar

[9] J. Leitner, B. Hinterstoisser, M. Wastyn, et al: Cellulose Vol. 14 (2007), pp.419-425.

Google Scholar

[10] M.J. John and S. Thomas: Carbohyd. Polym. Vol. 71 (2008), pp.343-364.

Google Scholar

[11] A. Chakraborty, M. Sain and M. Kortschot: Holzforschung Vol. 59 (2005), pp.102-107.

Google Scholar

[12] S. Janardhnan and M.M. Sain: BioResources Vol. 1 (2006), pp.176-188.

Google Scholar

[13] A.N. Nakagaito and H. Yano: Appl. Phys. A Vol. 78 (2004), pp.547-552.

Google Scholar

[14] M. Pääkkö, M. Ankerfors, H. Kosonen , et al: Biomacromolecules Vol. 8 (2007), p.1934-(1941).

Google Scholar

[15] J.C. Roux and T.L. Mayade: Powder Technol. Vol. 105, (1999), pp.237-242.

Google Scholar

[16] S. Kamel: Kamel-eXPRESS Polymer Letters Vol. 1 (2007), pp.546-575.

Google Scholar

[17] M. Henriksson, G. Henriksson, L.A. Berglund, et al: Eur. Polym. J. Vol. 43 (2007), pp.3434-3441.

Google Scholar

[18] M. Henriksson, L.A. Berglund, P. Isaksson, et al: Biomacromolecules Vol. 9 (2008), pp.1579-1585.

Google Scholar