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Abstrakty
The aim of the study was to determine the rheological properties of solutions of two types of sodium alginate in water. Rheological studies were carried out to determine the rheological properties of the spinning solutions. Polymer solutions of different concentrations were obtained. Based on the preliminary research of the concentrations of solutions, the proper n and k parameters were selected in order to obtain fibre by wet spinning from solution method. For selected concentrations of polymer solutions, the calcium alginate fibres were obtained.
Czasopismo
Rocznik
Tom
Strony
123--126
Opis fizyczny
Bibliogr. 19 poz.
Twórcy
autor
- Technical University of Lodz, Department of Material and Commodity Sciences and Textile Metrology, Zeromskiego 116, 90-924 Lodz, Poland
autor
- Technical University of Lodz, Department of Material and Commodity Sciences and Textile Metrology, Zeromskiego 116, 90-924 Lodz, Poland
Bibliografia
- [1] Speakman J. B., Chamberlain N. H., The Production of Rayon from Alginic Acid. Journal of the Society of Dyers and Colourists Volume 60, Issue 10, pages 264–272, (October 1944).
- [2] Barikosky M., Dressing product with a calcium alginate matrix and method of production of the same, US Patent 5,981,821 (1999).
- [3] Fenton J.C., Keys A.F., Mahoney P.M.J., Alginate fabric, its use in wound dressing and surgical hemostats and a process for its manufacture, US Patent 5,714,955 (1998).
- [4] Griffiths B., Mahoney P.M.J., Sustained release alginate fibre and process for the preparation thereof, US Patent 5,690,955 (1997).
- [5] Mahoney P.M.J., Walker K., Alginate fibres, manufacture and use, US Patent 5,874,100 (1999).
- [6] Hosler J.A., Wound dressing and manufacture thereof, US Patent 6,153,214 (2000).
- [7] Qin Y., Gilding D.K., Fibres of cospun alginates, US Patent 6,080,420 (2000).
- [8] Langer R., Vacanti J.P., Tissue engineering, Science 260, (1993), 920-926.
- [9] Olszewska-Słonina D.M., Drewa T.A., Hodowla komórek, inżynieria tkankowa i medycyna regeneracyjna. Część I, Wiadomości Lekarskie LIX, (2006), 585-589.
- [10] Qurrat-ul-Ain, Sharma S., Khuller G.K., Garg S.K., Alginate-based oral drug delivery system for tuberculosis: pharmacokinetics and therapeutic effects, J. Antimicro. Chemother. 51, (2003), 931-938.
- [11] Ciofani G., Raffa V., Pizzorusso T., Menciassi A., Dario P., Characterization of an alginate-based drug delivery system for neurological applications, Med. Eng. &Phys. 30, (2008), 848-855.
- [12] Ciofani G., Raffa V., Menciassi A., Dario P., Alginate and chitosan particles as drug delivery system for cell therapy, Biomed. Microdevices 10, (2007), 131-140.
- [13] Tønnesen H.H., Karlsen J., Alginate in Drug Delivery Systems, Drug Dev. Ind. Pharm. 28, (2002), 621-630.
- [14] Pielesz A., Algi i alginiany - leczenie, zdrowie i uroda. Wydawnictwo internetowe e-bookowo ISBN 978-83-61184-97-3. (2010).
- [15] Painter T.J., Smidsrød O., Haug A., A computer study of the changes in composition-distribution occurring during random depolymerisation of binary linear heteropolysaccharide, Acta Chem. Scand. 22, (1968), 1637-1648.
- [16] Smidsrød O, Whittington S.G., Monte Carlo investigation of chemical inhomogeneity in copolymers, Macromolecules 2, (1969), 42-44.
- [17] Mikołajczyk, T., Wołowska-Czapnik, D., Boguń, M.; Precursor alginate fibres containing nano-particles of SiO2; Fibres and Textiles in Eastern Europe; Volume 12, Issue 3, July 2004, Pages 19-23.
- [18] Stodolak, E., Paluszkiewicz, C., Bogun, M., Blazewicz, M.; Nanocomposite fibres for medical applications; Journal of Molecular Structure; Volume 924-926, Issue C, 30 April 2009, Pages 208-213.
- [19] Boguń, M.; Rheological properties of sodium alginate spinning solutions with ceramic nanoadditives; Fibres and Textiles in Eastern Europe; Volume 76, Issue 5, 2009, Pages 17-22.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-805333f9-dbe6-4707-8fdc-d2d980399672