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Some R&D trends at the Institute of Chemical Fibres

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Warianty tytułu
PL
Kierunki prac badawczych Instytutu Włókien Chemicznych
Języki publikacji
EN
Abstrakty
EN
The basic directions of R&D work carried out in the Institute of Chemical Fibres are presented in this paper. Traditional scientific fields, such as modifying of synthetic and natural polymers, manufacturing of fibres from these polymers, as well as alternative technologies for manufacture of cellulosic fibres are still an important part of the Institute's activity. But recently, more and more, come into prominence modern R&D goals. To the range of new research directions conducted at the Institute can be included biomaterials and their application in medicine and agriculture, biotechnological methods for manufacturing and processing of polymers and fibres as well as the biomass for obtaining polymers and fibres.
Rocznik
Tom
Strony
3--5
Opis fizyczny
Bibliogr. 78 poz.
Twórcy
  • Instytut Włókien Chemicznych w Łodzi
Bibliografia
  • 1. H. Struszczyk, O. Kivekas, „Some Application of Microcrystalline Chitosan", in „Chitin and Chitosan", in G. Skjak-Braek, T Anthonsen, E Sandford, ed. „Chitin and Chitosan", Elsevier Applied Science, London, 777-781,1989.
  • 2. Polish Pat. 164247 „Method for continuous manufacture of microcrystalline chitosan".
  • 3. Finn. Pat. 83426 (1989) „Method for continuous manufacture of microcrystalline chitosan''
  • 4. Polish Pat. 160714 „Method for manufacture of chitosan and other products from shells of organisms specially marine organisms".
  • 5. Finn. Pat. 86068 (1989) „Method for manufacture of chitosan and other products from marine organisms shells".
  • 6. H. Struszczyk, H. Pospieszny, S. Kodiński, „Some New Application of Chitosan in Agriculture", in G. Skjak-Braek T. Anthonsen, P Sandford, ed. „Chitin and Chitosan", Elsevier Applied Science, London, 733-742,1989.
  • 7. H. Struszczyk, O. Kivekas, A Niekraszewicz, „Some Modem Applications of New Chitosan Forms", in A. Domard, Ch.Jeunieux, R. Muzzarelli, G. Roberts, ed.,, Advances in Chitin Science", vol. 1, J. Andre Publ, Lyon, Francja., 482-489,1996.
  • 8. H. Struszczyk, H. Pospieszny,,,New Applications of Chitin and its Derivatives in Plant Protection" , in A. F. Goosen ed."Applications of chitin and chitosan", Technomic Press, New York. 1997.
  • 9. Hoekstra, H. Struszczyk, O. Kivekas, „Percutaneous Microcrystalline Chitosan Application for Sealing Arterial Puncture Sites", Biomaterials 19, pp. 1467-1471 (1998).
  • 10. H. Struszczyk, „Creation of Chitosan Bioactivity", „Chitin and Chitosan" Polish-Russian Monograph, ed. H. Struszczyk, H. Pospieszny, A Gamzazade, Polish Chitin Society Series No 1, pp. 93-98,1999, Łódź.
  • 11. J. Ignacak, H. Struszczyk „The Acrobic Glycotysis Inhibitory Effect Caused by Chitosan rr. the Cancerous Cells of the Earlich Ascites Tumour Induced by Basics Fibroplast Growth Factor in Vitro", Acta Poloniae Pharmaceutica, 56,99-104,1999.
  • 12. Polish Pat. 160652 „Method for manufacture of chitosan fibres".
  • 13. Polish Pat. 168782 „Method for the manufacture of fibres, film and other products from cellulose carbamate „.
  • 14. Pat. Appl. P. 324 095 „Bioagent for protecting plants againts plant diseases caused by fungi"
  • 15. Pat. Appl. P. 324 094 „Bioagent for protecting plants againts bacterial diseases".
  • 16. Polish Pat. P. 332 995 „Blood anticoagulation agent".
  • 17. Polish Pat. P. 340131, Agent for plant protection against diseases".
  • 18. H. Struszczyk ed., „Progress on Chemistry and Application of Chitin and Its Derivatives" Monograph vol. IM Polish Chitin Society, Łódź, 1998.
  • 19. H. Struszczyk ed., „Progress on Chemistry and Application of Chitin and Its Derivauves~ Monograph, vol. V Polish Chitin Society, Łódź, 1999.
  • 20. H. Struszczyk, H. Pospieszny, A. Gamzazade, „Chitin and Chitosan", Polish-Russian Monograph, Polish Chitin Society Series Nol, Łódź, 1999.
  • 21. H. Struszczyk ed., „Progress on Chemistry and Application of Chitin and Its Derwatiws''. Monograph, voLVL Polish Chitin Society, Łódź, 2000.
  • 22. H. Struszczyk, P. Starostka, D. Wrwro, K Tosik, M. Wnuk, „Activation of Cellulose", in J.E Kennedy, GO. Phillips, EA Williams, ed. „Lignocellulosic: Science, Technology, Devekx-ment and Use", Ellias Horwood Ltd., New York, chapter 61,581-586,1992.
  • 23. A Urbanowski, H. Struszczyk, „Some Aspects of Polish Cellulose Carbamate", Chemicie Ylakna, Part 1,78-89 (1992).
  • 24. H. Struszczyk, A. Urbanowski, „New Method for Manufacture of Cellulose Carbamate", Fibres & Textiles in Eastem Europe, 1,28-30 (1993).
  • 25. H Struszczyk, D. Ciechańska, D. Wawro, P. Nousiainen, M. Matero, „Direct Solublc Cellulose of Celsol: Properties and Behaviour", in J. F. Kennedy, G. O. Phillips, P O. Williams ed., „Cellulose and Cellulose Derivatives: Physical-chemical Aspects and Industrial Applications", Woodhead Publ. Ltd, Cambridge, England,, chapter 4,29-36,1995.
  • 26. H. Struszczyk, A. Urbanowski, „Some Aspects of Cellulose Carbamate", in J. F. Kennedy, G. O. Phillips, P O. Williams ed., „Cellulose and Cellulose Derivatives: Physical-chemical Aspects and Industrial Applications", Woodhead Publ. Ltd, Cambridge, England, 207-212,1995.
  • 27. Ciechańska, E. Galas, H. Struszczyk, „Biotransformation of Cellulose", Fibres & Textiles in Eastern Europe, 4 (3-4), 148-150 (1996).
  • 28. H. Struszczyk, H. Schleicher, D. Ciechańska, „Direct Soluble Cellulose of Celsol - Properties and Behaviour", Lenzinger Berichte, 76,81-83 (1997).
  • 29. D. Wawro, H. Struszczyk, „Alkaline Solutions of Cellulose and Its Derivatives. I. Studies of Alkaline Solutions of Cellulose Carbamate", Fibres & Textiles in Eastern Europe, 6 (1), 45-48 (1998).
  • 30. Finn. Pat. Appl. 910990 (1991) „DissoMng cellulose and method for manufacture of dissolving cellulose".
  • 31. Finn. Pat. Appl. 107335 (1991) „Method for manufacture of fibres, foil and other products from dissolving cellulose"
  • 32. Finn. Pat. Appl. 913223 (1991) „Cellulose fibres from cellulose carbamate and method for their manufacture"
  • 33. German Pat. Appl. 19715617.1, European Pat. Appl. EP 0872489, US Pat. 5,906,926 „Method for modified manufacture of cellulose carbamate".
  • 34. US Pat. 5,622,666 (1997) „Modified Viscose Fibres and Method for Their Manufacture".
  • 35. US Pat. Appl. 08/866,596, Austrian Pat. AT 91597, German Pat. DE 19624867 „Impro-ving cellulose solubility in water containing amine oride".
  • 36. US Pat. 6,106,763, European Pat. Appl. EP 918101 „Process for producing cellulosic mouldings".
  • 37. H. Struszczyk, K Wrześniewska-Tosik, „Some Aspects of Lignin Modification", in J.F. Kennedy, G.O. Phillips, PA. Williams, ed."Cellulose Sources and Exploitation", Ellias Horwood, New York, chapter 63,505-508,1990.
  • 38. G.G. Allan, H. Struszczyk, et al., „The Microporosity of Pulp", Tappi Journal, 83-84,1991.
  • 39. H. Struszczyk, „Modification of Lignin: Present State and Development Forecast", in J. F. Kennedy, G. O. Phillips, R A. Williams, ed."Lignocellulosic: Science, Technology, Develop-ment and Use", Ellias Horwood Ltd., New York, chapter 84, 791-802,1992.
  • 40. K. Wrześniewska-Tosik, H. Struszczyk, „Some Aspects of Lignin Modification", in J. F. Kennedy, G. O. Phillips, P O. Williams ed., „Cellulose and Cellulose Derivatives: Physical-chemical Aspects and Industrial Applications", Woodhead Publ. Ltd, Cambridge, England, 491-498, 1995.
  • 41. A. Wawro, H. Struszczyk, „Biodegradable Films Made on the Basis of Biotransformed Cellulose/Starch Blends", Fibres & Textiles in Eastem Europe, 7,2 (25), 49,1999.
  • 42. K Wrześniewska-Tosik, W. Tomaszewski, H. Struszczyk, „Manufacturing and Thermal Properties of Lignin Resins", Fibres & Textiles in Eastem Europe, vol.9,2 (33) 2001.
  • 43. German Pat. 19624 866 (1997) „Verfahren zur Verbesserung der Reaktions - aktivitat von Cellulose zur Herstellung von Celluloseacetat".
  • 44. H. Struszczyk, „Manufacture of Chitosan and Alginate Fibres", MRS Conference, Boston, USA, Nov. 2001.
  • 45. H. Struszczyk, K. Wrześniewska-Tosik, D. Ciechańska, E. Wesołowska, „Application of Enzymatic Degradation for Utilization of Textile Wastes. I. Utilization of Blended Połyester-Cellulose Fibreous Wastes", Fibres & Textiles in Eastem Europę, 3, (4), 47-49 (1994).
  • 46. H. Struszczyk, K. Wrześniewska-Tosik, D. Ciechańska and E. Wesołowska, „Effect of the Process of Biosynthesis on Molecular Properties of Bacterial Cellulose", in J. F Kennedy, G. O. Phillips, P O. Wrlliams ed., „Cellulose and Cellulose Derivatives: Physical-chemical Aspects and Industrial Applications", Woodhead Publ. Ltd, Cambridge, England, chapter 3,15-28,1995.
  • 47. D. Ciechańska, E. Galas, H. Struszczyk, „Biotransformation of Cellulose", Fibres & TeMiles in Eastem Europę, 4 (3-4), 148-150 (1996).
  • 48. D. Ciechańska, G. Strobin, S. Boryniec, D. Wawro, H. Struszczyk, „Biotransformation of Cellulose: GPC Studies", Int. J. of Polymer Analysis & Charact, 3, (1997).
  • 49. D. Ciechańska, H. Struszczyk K Guzińska, „Biosynthesis of Cellulose in Static Conditions", Fibres &Textiles in Eastem Europe, 6 (1), 59-63 (1998).
  • 50. H. Struszczyk, D. Ciechańska, „Perspectives of Enzymes for Processing Cellulose for New Chemical Fibres", in H.Erikson ed., „Enzyme Applications in Fiber Processing", vol. 25, Symposium Series 687, American Chem. Society, Washington D.C, 1998.
  • 51. D. Ciechańska, G. Strobin, S. Boryniec, H. Struszczyk, „Biotransformation of Cellulose, GPC Studies", International Journal of Polymer Anatyses and Characteristics, 4,205 (1998).
  • 52. H. Struszczyk E. Wesołowska, D. Ciechańska, „Development of the Biological Utilization of Textile Fibres. I. Scaling up of the Biodegradation Process", Fibres & Textiles in Eastem Europę, 8,2 (29), 74-78,2000.
  • 53. D. Ciechańska, H. Struszczyk, K. Guzińska, D. Wawro, „Biotechnological Method for Manufacture of Cellulose Fibres, Film and Other Products" in H. Struszczyk, A. Marcincin, A Włochowicz, ed., „Fibre-grade Polymers, Chemical Fibres and Special Textiles", CEC monograph series, vol. 1, pp. 35- 46, Łódź, 2001.
  • 54. Polish Pat. 171062 (1997) „Method for Manufacture of Modified PET".
  • 55. K Grzebieniak, „Copołyesters of Ethylene Terephthalate and Lactic Acid Susceptible to Hydrołytic Degradation". Fibres and Textiles in Eastem Europe, 4 (1), 34-37,1996.
  • 56. K Grzebieniak, M. Ratajska, G. Strobin, „Estimation of Hydrolysis and Biodegradation Process in Ethylene Terephthalate and Lactic Acid Copotymers", Fibres and iextiles in Eastem Europe, 9 (2), 61-65,2001.
  • 57. H. Struszczyk, A. Niekraszewicz, E Kucharski, „Bioactive Viscose Fibres", in J. F. Kennedy, G. O. Phillips, PA Williams, ed. „Cellulose Sources and Exploitation", Ellias Horwood, New York, 27, 217-220, 1990.
  • 58. H. Struszczyk A Niekraszewicz, Z. Płonka, „Bioactive Polyamide Fibres", Fibres & Textiles in Eastem Europe, 1 (2), 26-27 (1993).
  • 59. H. Struszczyk, H. Pospieszny, O. Kivekas, „Bioactivity of Chitosans", in R. A A Muzzarelli, ed., „Chitin Enzymology", vol. 2, Atec Edizioni, 497-502,1996.
  • 60. H. Struszczyk, „Some Aspects of Chitosan Bioactivity", in H. Struszczyk, ed., „Progress on Chemistry and Application of Chitin and its Derivatives" vol. IV Polish Chitin Society, Łódź, 1998, pp.1-7.
  • 61. H. Struszczyk, „Creation of Chitosan Bioactivity", „Chitin and Chitosan" Polish - Russian Monograph, ed. H. Struszczyk, H. Pospieszny, A. Gamzazade, Polish Chitin Society Series No 1,93-98,1999, Łódź.
  • 62. J. Hoffman, A. Niekraszewicz, H. Struszczyk, N. Polka, „Bioactive Polypropylene Non-wovens", on H. Struszczyk, A. Marcincin, A. Włochowicz, ed., „Fibre-Grade Polymers, Chemical Fibres and Special Textiles", CEC Monograph Series vol. 1, pp. 309-318.
  • 63. Finn. Pat. Appl. 895893 (1989) „Modified viscose fibres and method for their manufacture".
  • 64. H. Struszczyk, A Urbanowski, K Twarowska-Schmidt, J. Kiełbasa, „Hollow Fibres: Action and Applications", 6th International Techtextil Symposium for Technical Textiles and Textile Reinforced Materials", Frankfurt am Maine, Germany, Proceedings of Symposium, 217-225, 1994.
  • 65. A. Urbanowski, H. Struszczyk „Chemical Fibres with Special Propertials", Proceedings of International Conference, IMTEX'95 Conference, Łódź, Poland, 1995.
  • 66. K Twarowska-Schmidt, H. Struszczyk „Flame Resistant Polypropylene", Fibres & Textiles in Eastem Europe, 7,4 (27), 54,1999.
  • 67. European Pat. Appl. EP 1048761, Turkish Pat. Appl. 2000/01169, US Pat. Appl. 09/ 551,056 „Modified fibres and other products from polypropylene and procedures for the manufacture of modified fibres and other products from polypropylene".
  • 68. M. Kucharska, A. Niekraszewicz, H. Struszczyk, H. Bursig, „Wound healing dressings of Choriospan modified by chitosan", in H. Struszczyk, ed. „Progress on Chemistry and Applcation of Chitin and Its Derivatives", vol. III, 141-153,1997.
  • 69. A. Wojdyła, L. Orlikowski, A. Niekraszewicz, H. Struszczyk, „Influence of chitosan in vitro on the growth of some pathogenes", in H. Struszczyk, ed. „Progress on Chemistry and Application of Chitin and Its Derivatives", vol. III, 208-209,1997.
  • 70. Ignacak, M. Gumińska, T. Kędryna, H. Struszczyk, „Comparison of the Effect of Chitin Derivatives with High and Low Deacetylation Degree (DD) in Glycolytic Metabolism of Ehrlich Ascites Tumour (EAT) Cells", in H. Struszczyk ed., „Progress on Chemistry and Application of Chitin and Its Derivatives" vol. IV, pp. 103-113,1998.
  • 71. C. Watała, M. Kucharska, J. Golański, B. Więcławska, A. Niekraszewicz, H. Struszczyk, „Studies on Effects of Microcrystalline Chitosan on the Activation of Platelets in Whole Blood", in H. Struszczyk ed., „Progress on Chemistry and Application of Chitin and Its Derivatives" vol. IV, pp. 125-133,1998.
  • 72. H. Struszczyk, K. Guzińska, H. Pospieszny, „Influence of the Structure of Chitosan Forms on Their Antibacterial Activity", in H. Struszczyk ed., „Progress on Chemistry and Applica¬tion of Chitin and Its Derivatives" vol. IV, pp. 143-148,1998.
  • 73. J. Ignacak H. Struszczyk „Inhibitory Effects on Molecular and Super-Molecular Chitosan Structure on the Metabolic of the Tumor Celi in Vitro", „Chitin and Chitosan" Polish-Russian Monograph, ed. H. Struszczyk H. Pospieszny, A Gamzazade, Polish Chitin Society Series No 1,77-92,1999, Łódź.
  • 74. J. Ignacak, H. Struszczyk „The Acrobic Glycolysis Inhibitory Effect Caused by Chitosan in the Cancerous Cells of the Earlich Ascites Tumour Induced by Basics Fibroplast Growth Factor in Vitro", Acta Poloniae Pharmaceutica, 56,99-104,1999.
  • 75. J. Ignacak, H. Struszczyk „The Influence of Microcrystalline Chitosan and Basics Fibroblast Growth Factor (Bfgf) on the ATP Level in the Ehrlich Ascites Tumour Cells", in H. Struszczyk ed., „Progress on Chemistry and Application of Chitin and Its Derivatives" vol. V, pp. 59- 68, 1999.
  • 76. M. Kucharska, C. Watała, B. Więcławska, H. Struszczyk, K Gwoździński, „The effects of microcrystalline chitosan on the activation of platelets", in H. Struszczyk ed., „Progress on Chemistry and Application of Chitin and Its Derivatives" vol. VI, pp.131-135,2000.
  • 77. Polish Pat. Appl. P. 320 491 (1997) „Biological wound dressing and method for its manufacture".
  • 78. Polish Pat. Appl. P. 347338 (2001) „Method for manufacture of bioactive nonwovens wound dressing".
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Bibliografia
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