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首页> 外文期刊>Journal of Polymers and the Environment >A Solvent-Free Approach for Production of Films from Pectin and Fungal Biomass
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A Solvent-Free Approach for Production of Films from Pectin and Fungal Biomass

机译:由果胶和真菌生物质生产薄膜的无溶剂方法

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Self-binding ability of the pectin molecules was used to produce pectin films using the compression molding technique, as an alternative method to the high energy-demanding and solvent-using casting technique. Moreover, incorporation of fungal biomass and its effects on the properties of the films was studied. Pectin powder plasticized with 30% glycerol was subjected to heat compression molding (120 °C, 1.33 MPa, 10 min) yielding pectin films with tensile strength and elongation at break of 15.7 MPa and 5.5%, respectively. The filamentous fungus Rhizopus oryzae was cultivated using the water-soluble nutrients obtained from citrus waste and yielded a biomass containing 31% proteins and 20% lipids. Comparatively, the same strain was cultivated in a semi-synthetic medium resulting in a biomass with higher protein (60%) and lower lipid content (10%). SEM images showed addition of biomass yielded films with less debris compared to the pectin films. Incorporation of the low protein content biomass up to 15% did not significantly reduce the mechanical strength of the pectin films. In contrast, addition of protein-rich biomass (up to 20%) enhanced the tensile strength of the films (16.1–19.3 MPa). Lastly, the fungal biomass reduced the water vapor permeability of the pectin films.
机译:果胶分子的自结合能力通过压缩成型技术用于生产果胶薄膜,作为高能耗和溶剂型浇铸技术的替代方法。此外,研究了真菌生物质的掺入及其对薄膜性能的影响。将用30%甘油增塑的果胶粉末进行热压成型(120°C,1.33MPa,10min),制得的果胶薄膜的拉伸强度和断裂伸长率分别为15.7MPa和5.5%。丝状真菌米根霉使用从柑橘类废弃物中获得的水溶性养分进行栽培,产生的生物质包含31%的蛋白质和20%的脂质。比较而言,同一菌株在半合成培养基中培养,产生的生物质具有较高的蛋白质(60%)和较低的脂质含量(10%)。 SEM图像显示与果胶膜相比,添加了具有更少碎屑的生物质产生的膜。掺入高达15%的低蛋白质含量的生物质并没有显着降低果胶薄膜的机械强度。相比之下,添加富含蛋白质的生物质(高达20%)可增强薄膜的拉伸强度(16.1-19.3 MPa)。最后,真菌生物质降低了果胶膜的水蒸气渗透性。

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