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Bacterial cellulose films: influence of bacterial strain and drying route on film properties

机译:细菌纤维素膜:细菌菌株和干燥途径对膜性能的影响

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摘要

Structural properties of bacterial cellulose (BC) depend on the microstructure of the material, which in turn is influenced by the bacterial strain. This paper reports the production of BC thin films from two bacterial strains, gluconacetobacter xylinus (GX) and gluconacetobacter europaeus (GE), and three methods of drying the films; at room temperature, freeze drying and supercritical drying. The porosity, transparency, water absorption capacity (WAC) and mechanical properties of the obtained films are further investigated. We conclude that materials with different properties can be fabricated by selecting the bacterial strain or the drying method. Supercritical drying of films of GE achieved mechanically robust and extremely light films, 0.05 g/mL, with up to 96 % of porosity, and with a WAC up 110 times their dried weight. We determined that materials resulting from GE strain are not much affected by the drying method. On the other hand, GX produced BC films more sensitive to the drying method used. Films are denser, 0.6-0.2 g/mL, with tunable porosity from 60 to 90 % and their maximum WAC is 66 times their dried weight.
机译:细菌纤维素(BC)的结构特性取决于材料的微观结构,而微观结构又受细菌菌株的影响。本文报道了由两种细菌菌株木糖葡糖杆菌(GX)和欧洲葡糖糖杆菌(GE)生产BC薄膜的方法,以及三种干燥薄膜的方法。在室温下冷冻干燥和超临界干燥。进一步研究了所得膜的孔隙率,透明度,吸水率(WAC)和机械性能。我们得出结论,可以通过选择细菌菌株或干燥方法来制造具有不同特性的材料。 GE薄膜的超临界干燥获得了0.05 g / mL的机械坚固且极轻的薄膜,孔隙率高达96%,并且WAC达到其干重的110倍。我们确定,由GE应变产生的材料受干燥方法的影响不大。另一方面,GX生产的BC薄膜对使用的干燥方法更敏感。薄膜较致密,为0.6-0.2 g / mL,孔隙率可调为60%至90%,最大WAC是其干重的66倍。

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