Author unknown, “Meltblown Process,” “Meltblown Markets,” “Meltblown vs.Competitive Technologies,” pp. 7-26, undated. |
“Dissolving Pulping Conditions,” Pulp and Paper Manufacture, 3rd Edition, 4:229-243, Ingruber O.V. et al. Eds., Joint Textbook Committe of the Paper Industry publishers undated. |
Balk, H. et al., “Use of Spinbonding and Melt Blown Microfiber Technology for Filter Media,” pp. 287-297, TAPPI Proceedings, Nonwoven Conference, 1991. |
Boman, R. et al., “Transition Metal Removal Before A (PO) Stage in ECF Sequences,” International Pulp Bleaching Conference, 1996. |
Bouchard, J. et al., “A Comparison Between Acid Treatment and Chelation Prior to Hydrogen Peroxide Bleaching of Kraft Pulps,” Pulp and Paper Research Institute of Canada undated. |
Chanzy, H. et al., “Dissolution and Spinning of Exploded Wood in Amine Oxide Systems,” Wood and Cellulosics, pp. 573-579, editors Kennedy, J.F. et al., Ellis Harwood Publishers undated. |
Chanzy, H. et al., “Spinning of Exploded Wood from Amine Oxide Solutions,” Polymer Communications,27:171-172, 1986. |
Cole, D.J., “Courtaulds Tencel Fibre in Apparel Fabrics,” Courtaulds Fibres, May, 1992. |
Eichinger, D. et al., “Lenzing Lyocell—An Interesting Cellulose Fibre for the Textile Industry,” talk held at 34th IFC, Dornbirn, 1995. |
Gurnagul, N. et al., “The Effect of Cellulose Degradation on the Strength of Wood Pulp Fibres,” Pulp and Paper Research Institute of Canada undated. |
Hill, R.T. et al., “Transition Metal Control for Peroxygen Bleaching a Sulfite Pulp,” pp. 489-500, TAPPI Pulping Conference, Houston, Texas, 1994. |
Humphrey, A.E., “The Hydrolysis of Cellulosic Materials to Useful Products,” pp. 25-53, Hydrolysis of Cellulose, 1978. |
Johnson, P., “Courtaulds Lyocell—A Cellulosic Fibre for Special Papers and Nonwovens,” pp. 245-248, TAPPI Nonwovens Conference, 1996. |
Kamide, K. et al., “Structural Change in Alkali-Soluble Cellulose Solid During Its Dissolution Into Aqueous Alkaline Solution,” Cellulose Chem. Technol., 24:23-31, 1990. |
Kamide, K., et al., “Dissolution of Natural Cellulose into Aqueous Alkali Solution: Role of Super-Molecular Structure of Cellulose,” Polymer Journal 24:71-86, 1992. |
Kruger, I.R. et al., “Cellulosic Filament Yarn From the NMMO Process,” Presentation: Int. Chemiefaser-Tagung, Dornbirn, 1993. |
Lipinsky, E.S., “Perspectives on Preparation of Cellulose for Hydrolysis,” pp. 1-23, Hydrolysis of Cellulose, 1978. |
Luo, M., “Characterization of Cellulose and Galactomannan Blends from the N-Methylmorpholine N-Oxide/Water Solvent System,” State University of New York, Syracuse, New York, Apr., 1994. |
Marini et al., “Lenzing Lyocell,” Presentation: Int. Chemiefaser-Tagung, Dornbirn, 1993. |
Michels, C. et al., “The Aminoxide Process Developed in the TITK,” Thuringisches Institut fur textil- und Kunstsoff-Forschung Talk, Rudolstadt, Sep., 1994. |
Mieck, K. et al., “Examination of the Fibrillation Tendency of Cellulosic Man-Made Spun Fibres with Different Fibre Formation Mechanisms,” Presentation: Int. Chemiefaser-Tagung, Dornbirn, 1993. |
Mortimer, S.A. et al., “Methods for Reducing the Tendency of Lyocell Fibers to Fibrillate,” pp. 305-316, Centre de Recherches sur les Macromolecules Vegetales, Grenoble, France, Mar., 1995. |
Nicolai, M. et al., “Textile Crosslinking Reactions to Reduce the Fibrillation Tendency of Lyocell Fibers,” Textile Res. J. 66(9):575-580, 1996. |
Robert, A. et al., “Possible Uses of Oxygen in Bleaching Cellulose Pulps. (2). Bleaching Cellulose Pulps Previously Treated With Oxygen,” ATIP Bulletin 18, 4:166-176, 1964. |
Trimble, L.E., “The Potential for Meltblown”, pp. 139-149, presentation undated. |
Woodings, C.R., “Fibers (Regenerated Cellulosics),” Encyclopedia of Chemical Technology, Fourth Edition, 10:696-726, John Wiley & Sons publishers undated. |
Yamashiki, T. et al., “Characterisation of Cellulose Treated by the Steam Explosion Method. Part 1: Influence of Cellulose Resources on Changes in Morphology, Degree of Polymerisation, Solubility and Solid Structure,” British Polymer Journal 22:73-83, 1990. |
Yamashiki, T. et al., “Characterisation of Cellulose Treated by the Steam Explosion Method. Part 2: Effect on Treatment Conditions on Changes in Morphology, Degree of Polymerisation, Solubility in Aqueous Sodium Hydroxide and Supermolecular Structure of Soft Wood Pulp During Steam Explosion,” British Polymer Journal 22:121-128, 1990. |
Yamashiki, T. et al., “Characterisation of Cellulose Treated by the Steam Explosion Method. Part 3: Effect of Crystal Forms (Cellulose I, II and III) of Original Cellulose on Changes in Morphology, Degree of Polymerisation, Solubility and Supermolecular Structure by Steam Explosion,” British Polymer Journal 22:201-212, 1990. |
Yuan, Z. et al., “The Role of Transition Metal Ions During Peracetic Acid Bleaching of Chemical Pulps,” pp. 1-8, 83rd Annual Meeting, Technical Section CPPA undated. |
Zhang, X. et al., “The Role of Transition Metal Species in Delignification With Distilled Peracetic Acid,” J. Wood Chemistry and Technology 18(3):253-266, 1998. |