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An efficient conversion of waste feather keratin into ecofriendly bioplastic film

机译:将废羽毛角蛋白有效转化为生态生物塑料薄膜

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Feathers biomass from poultry industry is considered as an important waste product, which creates serious environmental problems. In this study, keratin was extracted from waste chicken feathers using sodium sulfide as a reducing agent under optimized conditions. The extracted keratin particles were used to develop a bioploymeric film by adding microcrystalline cellulose as nano-additive agent. The calculated yield of 80.2% was obtained for keratin from feathers dry weight 25g (w/w). The extracted keratin was characterized using Fourier transform infrared spectroscopy, scanning electron microscopy (SEM), thermogravimetric analysis, differential scanning calorimetry, wide-angle X-ray diffraction. The physiochemical characteristics of the feathers were compared with the keratin powder. The regenerated keratin particles preserved their chemical composition, thermal strength and stability after chemical extraction. The extracted keratin particles showed 10-20-mu m spongy porous microparticles in SEM analysis. The keratin powder was used to synthesize a bioplastic film using glycerol (3.5%) and microcrystalline cellulose (0.2%) in NaOH for 48h at 60 degrees C. The calculated thickness of bioplastic film was 1.12 x 10(-4) mm with tensile strength of 3.62 +/- 0.6MPa. The Young's modulus and break elongation for synthesized bioplastic film were 1.52 +/- 0.34MPa and 15.8 +/- 2.2%, respectively. The feather and keratin showed maximum similarity index of 64.74% (L-alanyl, L-alanyl, L-alanine, p-nitroanilide) and 64.32% with d-pantethine, respectively, using OMNIC Specta software. Overall, the study presented a highly efficient method to convert the waste feather biomass into a bioplastic film which can be used in biopolymer, biomedical and pharmaceutical industries.
机译:家禽业的羽毛生物质被认为是重要的废弃物,会造成严重的环境问题。在这项研究中,在最佳条件下,使用硫化钠作为还原剂从废鸡毛中提取了角蛋白。通过添加微晶纤维素作为纳米添加剂,将提取的角蛋白颗粒用于显影生物聚合物薄膜。从干重25g(w / w)的羽毛中,角蛋白的计算产率为80.2%。使用傅立叶变换红外光谱,扫描电子显微镜(SEM),热重分析,差示扫描量热法,广角X射线衍射对提取的角蛋白进行表征。羽毛的理化特性与角蛋白粉进行了比较。再生的角蛋白颗粒在化学提取后保留了它们的化学组成,热强度和稳定性。提取的角蛋白颗粒在SEM分析中显示出10-20μm的海绵状多孔微粒。角蛋白粉用于在60摄氏度下于NaOH中使用甘油(3.5%)和微晶纤维素(0.2%)在48h内合成生物塑料膜。生物塑料膜的计算厚度为1.12 x 10(-4)mm 3.62 +/- 0.6MPa。合成生物塑料薄膜的杨氏模量和断裂伸长率分别为1.52 +/- 0.34MPa和15.8 +/- 2.2%。使用OMNIC Specta软件,羽毛和角蛋白与d-泛胺酸的最大相似指数分别为64.74%(L-丙氨酰,L-丙氨酰,L-丙氨酸,对硝基苯胺)和64.32%。总体而言,该研究提出了一种高效的方法,可将废羽毛生物质转化为生物塑料薄膜,该薄膜可用于生物聚合物,生物医学和制药行业。

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