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Production, Preparation and Characterization of Microalgae-Based Biopolymer as a Potential Bioactive Film

机译:基于微藻基生物聚合物的制备,制备和表征作为潜在的生物活性膜

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Six microalgae strains were screened according to their biomass productivity and polymer synthesis, showing biomass productivity between 0.14 and 0.68 g/(L·d) for a 21-day growth period. Extracellular biopolymers from the spent culture media of Nostoc sp. (No), Synechocystis sp. (Sy), and Porphyridium purpureum (Pp) was obtained, and the yields of the clean biopolymer were 323, 204, and 83 mg/L, respectively. The crude biopolymer was cleaned up using a solid-phase extraction technique. The emulsification index E24 values for the clean biopolymer were 77.5%, 68.8%, and 73.3% at 0.323, 0.083, and 0.204 mg/mL, respectively. The clean biopolymer of the No strain showed the highest fungal growth inhibition against Fusarium verticillioides (70.2%) and Fusarium sp. (61.4%) at 2.24 mg/mL. In general, transparent and flexible biofilms were prepared using biopolymers of No and Pp. The microstructural analysis revealed the presence of pores and cracks in the biofilms, and the average roughness Ra values are 68.6 and 86.4 nm for No and Pp, respectively, and the root mean square roughness Rq values are 86.2 and 107.2 nm for No and Pp, respectively.
机译:根据其生物质生产率和聚合物合成筛选六种微藻菌株,显示出21天的生长期为0.14和0.68g /(l·d)的生物质生产率。来自Nostoc SP的废培养基的细胞外生物聚合物。 (no),synechocystis sp。 (SY)和卟啉吡啶um(PP)得到,清洁生物聚合物的产率分别为323,204和83mg / L.使用固相提取技术清洁粗生物聚合物。清洁生物聚合物的乳化指数E24值分别为0.323,0.083和0.204mg / ml的77.5%,68.8%和73.3%。 NO菌株的清洁生物聚合物显示出对镰刀菌(70.2%)和镰刀菌的真菌生长抑制最高的真菌生长抑制。 (61.4%)在2.24 mg / ml。通常,使用NO和PP的生物聚合物制备透明和柔性的生物膜。微观结构分析显示出生物膜中的孔和裂缝的存在,并且平均粗糙度Ra值分别为68.6和86.4nm,分别为NO和PP,NO和PP的根均方粗糙度RQ值为86.2和107.2nm,分别。

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