PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Natural Polymers on the Global and European Market - Presentation of Research Results in the Łukasiewicz Research Network – Institute of Biopolymers and Chemical Fibers-Case Studies on the Cellulose and Chitosan Fibers

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper aims to present the main tendencies on the global and European natural polymer markets in recent years from the point of view of the requirements and achievements of the European Commission that have been expressed in recent programs and Strategies, with special reference to the Circular Economy New Action Plan and the European Green Deal - the EU Strategies for Climate Neutrality. Natural polymers play an important role among biodegradable products whose role in the production and international trade has been systematically increasing, especially since the middle of the last decade of the new century (2015). Natural polymers are also recommended by the EU from the point of view of their specific importance in the group of biodegradable products.
Rocznik
Strony
445--458
Opis fizyczny
Bibliogr. 50 poz.
Twórcy
  • Faculty of Economics and Sociology, Department of World Economy and European Integration, University of Lodz, Łódź, Poland
  • Faculty of Material Technologies and Textile Design, Technical University of Lodz, Łódź, Poland
  • Łukasiewicz Research Network - Institute of Biopolymers and Chemical Fibres, Łódź, Poland
  • Łukasiewicz Research Network - Institute of Biopolymers and Chemical Fibres, Łódź, Poland
  • Faculty of Economics and Sociology, Department of World Economy and European Integration, University of Lodz, Łódź, Poland
Bibliografia
  • [1] PL160866 (1989). Sposób wytwarzania karbaminianu celulozy.
  • [2] Kamide, K., Okajima, K. (1987). pat. USA 4 634 470.
  • [3] Yamashiki, T., Matsui, T., Kowsaka, K., Saitoh, M., Okajima, K., et al. (1992). New class of cellulose fibres spun from the novel solutions of cellulose by wet spinning method. Journal of Applied Polymer Science, 44(4), 691–698.
  • [4] PL188788 (1997). Sposób wytwarzania włókien, folii i innych produktów z alkalicznych roztworów celulozy.
  • [5] PL167776B (1991). Sposób wytwarzania włókien, folii i innych produktów z rozpuszczalnej celulozy.
  • [6] EP1228098 (2000). Method for the manufacture of fibres, film and other products from modified soluble cellulose.
  • [7] EP1317573 (2000). Process for producing fibres, film, casings and other products from modified soluble cellulose.
  • [8] Kuzmina, O., Sashina, E., Troshenkowa, S., Wawro, D. (2010). Dissolved state of cellulose in ionic liquids – the impact of water. Fibres & Textiles in Eastern Europe, 18(3), 32–37.
  • [9] Wawro, D., Stęplewski, W., Madaj, W., Michud, A., Hummel, M., Sixta, H. 2015). Impact of water in the casting of cellulosic film from ionic liquid solutions. Fibres & Textiles in Eastern Europe, 23, 4(112), 25–32.
  • [10] US6106763 (2000). Process for producing cellulose mouldings.
  • [11] Wendler, F., Meister, F., Wawro, D., Wesołowska, E., Ciechańska, D., et al. (2010). Polysaccharide blend fibres formed from NaOH, N-methylmorpholine-N-oxide and 1-Ethyl-3-methylimidazolium acetate. Fibres & Textiles in Eastern Europe, 18(2), 21–30.
  • [12] PL159089 (1989). Sposób wytwarzania karbaminianu celulozy.
  • [13] Wawro, D., Hummel, M., Michud, A., Sixta, H. (2014). Strong cellulosic film cast from ionic liquid solutions. Fibres & Textiles in Eastern Europe, 22, 3(105), 35–42.
  • [14] Kuzmina, O., Jankowski, S., Fabianska, A., Sashina, E., Wawro, D. (2014). Preswelling of cellulose pulp for dissolution in ionic liquid. Cellulose Chemistry and Technology, 48 (1–2), 45–51.
  • [15] Ek, M., Chirat, C., Li, D., Iversen, T., Malmström, E., et al. (2014). WOBAMA – Wood based materials and fuels. 13th European Workshop on Lignocellulosics and Pulp, June, 24–27, 2014 - Seville, Spain.
  • [16] Wawro, D, Stęplewski, W. (2010). Producing of continuous cellulose fibres modified with plant proteins. Fibres & Textiles in Eastern Europe, 18(6), 32–38.
  • [17] Strobin, G., Wawro, D., Stęplewski, W., Ciechanska, D., Jóźwicka J, et al. (2006). Formation of cellulose/silk-fibroin blended fibres. Fibres & Textiles in Eastern Europe, 14(4), 32–35.
  • [18] Wrzesniewska-Tosik, K., Wawro, D., Ratajska, M., Włodzimierz, S. (2007). Novel biocomposites with feather keratin. Fibres & Textiles in Eastern Europe, 15(5–6), 157–162.
  • [19] Stęplewski, W., Kazimierczak, J., Wawro, D. (2010). Novel method of preparing flame retardant cellulose-silicate fibres. Fibres & Textiles in Eastern Europe, 18(3), 24–31.
  • [20] Wawro, D., Stęplewski, W., Bodek A. (2009). Manufacture of cellulose fibres from alkaline solutions of hydrothermally-treated cellulose pulp. Fibres & Textiles in Eastern Europe, 17(3), 18–22.
  • [21] Łaszkiewicz, B. (Ed.) (1997). Wytwarzanie włókien celulozowych bez udziału dwusiarczku węgla (The manufacture of cellulosic fibres without carbon disulfite). A.C.G.M. Lodart S.A., Łódź.
  • [22] Sixta, H., Michud, A., Hauru, L., Asaadi, S., Ma, Y., et al. (2015). A high strenght regenerated cellulose fibres, Special issue: Cellulose dissolution and regeneration: systems and interactions. Nordic Pulp & Paper Research Journal, 30(1).
  • [23] PL169310B (1992). Sposób regeneracji włókien, folii i innych produktów z karbaminianu celulozy.
  • [24] Swatloski, R. P., Spear, S. K., Holbrey, J. D., Rogers, R. D. (2002). Dissolutions of cellulose with ionic liquids. Journal of the American Chemical Society, 124(18), 4874–4975.
  • [25] Haslinger, S., Schlapp-Hackl, I., Ge, X., Wawro, D., Sixta, H. (2019). Cellulose films from birch pulp and cotton waste using [DBNH] [OAc]. The 20th International Symposium on Wood, Fibre, and Pulping Chemistry September 9th – 11th, 2019, Tokyo, Japan.
  • [26] PL160652 (1989). Sposób wytwarzania włókien chitozanowych.
  • [27] Struszczyk, H., Wawro, D., Niekraszewicz, A. (1992). Biodegradability of chitosan fibres. In: Advances in chitin and chitosan, pp. 580–585. doi: 10 1007/978-94-011-5942-5 66.
  • [28] Wawro, D., Ciechańska, D., Stęplewski, W., Bodek, A. (2006). Chitosan microfibrids: Preparation, selected properties and application. Fibres Text East EurFibres & Textiles in Eastern Europe 14(3), 97–101.
  • [29] Niekraszewicz, A., Kucharska, M., Wawro, D., Struszczyk, M. H., Rogaczewska, A. (2007). Partially resorbable hernia meshes. In: Jaworska, M. (Ed.). Progress on chemistry and application of chitin and its derivatives. Monograph, Vol. XII, Polish Chitin Society, Łódź, pp. 109–114.
  • [30] Niekraszewicz, A., Kucharska, M., Wawro, D., Kazimierz, K., Rogaczewska, A. et al. (2007). Development of a manufacturing method for surgical meshes modified by Chitosan. Fibres & Textiles in Eastern Europe, 15(3), 105–109.
  • [31] Strobin, G., Ciechańska, D., Wawro, D., Stęplewski, W., Jóźwicka, J., et al. (2007). Chitosan fibres modified by fibroin. Fibres & Textiles in Eastern Europe, 15(5–6), 146–148.
  • [32] Wawro, D., Stęplewski, W., Wrześniewska-Tosik, K. (2009). Preparation of keratin-modified chitosan fibres. Fibres & Textiles in Eastern Europe, 17(4), 37–42.
  • [33] Wawro, D., Stęplewski, W., Brzoza-Malczewska, K., Święszkowski, W. (2012). Collagen-modified chitosan fibres intended for scaffolds. Fibres & Textiles in Eastern Europe, 20(6B), 96.
  • [34] PL166969B (1991). Sposób wytwarzania włókien celulozowych z karbaminianu celulozy.
  • [35] Stęplewski, W., Wawro, D., Niekraszewicz, A., Ciechanska, D. (2006). Research into the process of manufacturing alginate-chitosan fibres. Fibres & Textiles in Eastern Europe, 14(4), 25–31.
  • [36] Wawro, D., Stęplewski, W., Dymel, M., Sobczak, S., Skrzetuska, E., et al. (2012). Antibacterial chitosan fibres with content of silver nanoparticles. Fibres & Textiles in Eastern Europe, 20, 6B(96), 24–31.
  • [37] Pighinelli, L., Kucharska, M., Wawro, D. (2012). Preparation of microcrystalline chitosan. Monography, Lambert Academic Publishing.
  • [38] PL393022 (2010). Method for producing composite chitosan fibres.
  • [39] Wawro, D., Pighinelli, L. (2011). Chitosan fibres modified with HAp/beta-TCP nanoparticles. International Journal of Molecular Sciences, 12(11), 7286–7300.
  • [40] Pighinelli, L., Wawro, D., Guimarães, M. F., Paz, R. L., Zanin, G., et al. (2018). Functional biocomposites of calcium phosphate–chitosan and its derivatives for hard tissue regeneration short review. In: Thakur, V., Thakur, M. (Eds). Functional biopolymers. Springer Series on Polymer and Composite Materials.
  • [41] Wawro, D., Skrzetuska, E., Włodarczyk, B., Kowalski, K., Krucińska, I. (2016). Processing of chitosan yarn into knitted fabrics. Fibres & Textiles in Eastern Europe, 24, 6(120), 8–14. doi: 10.5604/12303666.1215538.
  • [42] Wawro, D., Stęplewski, W., Marcol, W., Skrzetuska, E., Krucińska I. (2019). Chitosan nonwoven – preparation and properties. Progress on Chemistry and Application of Chitin and its Derivatives, Volume XXIV.
  • [43] Wlaszczuk, A., Marcol, M., Kucharska, M., Wawro, D., Palen, P., et al. (2016). PLGA tubes with multifilament chitosan yarn or chitosan sponge core in nerve regeneration. Journal of Oral and Maxillofacial Surgery, 74(11), 2327.e1–2327.e12.
  • [44] P.419943. (2019). Proteza z rdzeniem chitozanowym do regeneracji nerwów i sposób jej wytwarzania.
  • [45] Mikolajczyk, T., Mikolajczyk, W., Wawro, D. (1999). Effect of a stabiliser on changes in the rheological properties of cellulose carbamate spinning solutions during their storage. Fibres & Textiles in Eastern Europe, 7(2), 46–48.
  • [46] Wysokinska, Z. (2020). elaboration of the market analysis based on: Comtrade Database, SITC rev. 4; Web site: https://comtrade.un.org/data/. (Accessed on 2020.10.27).
  • [47] Struszczyk, H., Urbanowski, A. (1993). New Method for Manufacture of Cellulose Carbamate. Fibres & Textiles in Eastern Europe, 1, 28.
  • [48] Wawro, D., Struszczyk, H. (1998). Alkaline Solutions of Cellulose and Its Derivatives, I. Studies of Alkaline Solutions of Cellulose Carbamate. Fibres & Textiles in Eastern Europe, 1, 20.
  • [49] Urbanowski, A. (1996). Cellulose Carbamate a new raw materials for the manufacture of cellulose fibres. Chemical Fibres International, 46(4), 260.
  • [50] Ciechańska, D., Wesołowska, E., Wawro, D. (2009). An introduction to cellulosic fibres. In: Eichhorn, S., Hearle, J. W. S., Jaffe, M., Kikutani, T. (Eds.). Handbook of textile fibre structure: Natural, regenerated, inorganic and specialist fibres (Volume 2), Woodhead Textiles Series, Part 1 “Natural Fibres”. pp. 3–61.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-60ca2ae0-3de5-4c89-9ccc-a637590ffda2
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.