ES Food & Agroforestry · 2020 · 12 citations · 22 references
Plastic packaging films are not recyclable, difficult to be degraded and thus threaten the environment and the health of humans and other animals. Therefore, the purpose of the research is to derive edible polysaccharide films from highland barley bran fermented by Aureobasidium pullulans. Fermentation conditions using UV-mutated A. pullulans were optimized and the rheological, mechanical and barrier properties of edible polysaccharide films were analyzed. The polysaccharides produced by mutagenesis were increased by 8.6% after fermentation. The products before and after fermentation contained -and -glycosidic bonds, C-O-C, C=O, O-H, and other characteristic peaks of polysaccharides. Post-fermented polysaccharide films (post-FPF) were more moisture resistant than pre-fermented polysaccharide (pre-FPF) and control group (CGPF). Mechanical properties were better for CGPF than post-FPF, but post-FPF had better water solubility. It was feasible to make an edible polysaccharide film with improved water solubility. Post-fermentation polysaccharide films could help to reduce the cost of edible film production and improve the comprehensive utilization of bran.
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Emilia Nordlund, Kati Katina, Anna‐Marja Aura et al. · Journal of Cereal Science · 2013 · 92 citations
Mette Skau Mikkelsen, Birthe Møller Jespersen, Birger Lindberg Møller et al. · Food Research International · 2010 · 81 citations
Food Chemistry, Oat β-Glucan Preparations, Soluble Barley +7