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Search results for: bacterial nanocellulose
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Katedra chemii, technologii i biotechnologii żywności
Research Potential* Biochemiczne i funkcjonalne właściwości składników żywności oraz ich chemiczne i enzymatyczne modyfikacje * Łagodne przetwarzanie żywności * Bezpieczeństwo zdrowotne żywności * Analiza żywności * Reologia żywności * Związki aktywne biologicznie pochodzenia roślinnego
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Zespół Projektowania i Automatyzacji Procesów Technologicznych
Research PotentialProjektowanie procesów technologicznych wspomaganych komputerowo
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Zespół Materiałów Konstrukcyjnych
Research PotentialKształtowanie własności materiałów konstrukcyjnych i opis ich środowiskowej degradacji
Other results Pokaż wszystkie wyniki (9)
Search results for: bacterial nanocellulose
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Bacterial nanocellulose as a microbiological derived nanomaterial
PublicationBacterial nanocellulose (BNC) is a nanofibrilar polymer produced by strains such as Gluconacetobacter xylinus, one of the best bacterial species which given the highest efficiency in cellulose production. Bacterial cellulose is a biomaterial having unique properties such as: chemical purity, good mechanical strength, high flexibility, high absorbency, possibility of forming any shape and size and many others. Such a large number...
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The effect of dehydration/rehydration of bacterial nanocellulose on its tensile strength and physicochemical properties
PublicationBacterial nanocellulose (BNC) is a natural biomaterial with a wide range of biomedical applications. BNC contains 99 % of water which makes it too thick to be used as a bioimplant material. The aim of the work was to determine the effect of the BNC dehydration followed by rehydration on its mechanical and physicochemical properties, in the context of the use of BNC as bio-prostheses in the cardiovascular system. Dehydration involved the...
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In vitro biodegradation of bacterial nanocellulose under conditions simulating human plasma in the presence of selected pathogenic microorganisms
PublicationThe Biodegradability of bacterial nanocellulose (BNC) was assessed based on a change in its properties under conditions simulating human plasma in the presence or absence of the pathogens Staphylococcus aureus, Candida albicans and Aspergillus fumigatus. It was shown that the dry mass of BNC did not change during 6 months of incubation, except for samples stored in the presence of moulds, where the dry mass reduced by 40 %. The...
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Fabrication of Paper Sheets Coatings Based on Chitosan/Bacterial Nanocellulose/ZnO with Enhanced Antibacterial and Mechanical Properties
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Fabrication of Paper Sheets Coatings Based on Chitosan/Bacterial Nanocellulose/ZnO With Enhanced Antibacterial and Mechanical Properties
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