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Valorization of Chicken Feather Waste: Fabrication of Keratin-Chitosan Biofilms

机译:鸡羽毛废物的价值:角蛋白 - 壳聚糖生物膜的制造

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According to scientists, keratin is one of the most abundant fibrous materials in nature after cellulose and chitin in the world. Several nature fibrous materials have a wide range of application starting from biomedical application to the con- struction sector, and especially the textile sector. The uses of natural fibers in these sectors are economical for increasing their specific properties, such as antibacterial properties, flexibility, tensile strength, shear strength, toughness, etc. This paper presented a new type of keratin-chitosan biofilms with the separation of keratin from waste chicken feathers. The laboratory-scale keratin extraction process was designed. The keratin extraction percentage of different lixiviants (NaOH; NaOH+Na2S; Na2S) were studied and compared each other to understand the reaction process. The chosen reaction parame- ters were lixiviant concentration, reaction time, and temper- ature in an attempt to figure out their effects on the extraction of keratin. The highest extraction value was achieved at 60°C and 400 rpm for 6 h, and 0.5 M Na2S per 5 g of chicken feather powder. After obtaining keratin powder from the chicken feather powder, the keratin and chitosan powders were mixed in a certain ratio. Afterwards the polyvinyl alcohol was added into the mixture of keratin and chitosan at 100°C until forming the biofilms. The properties and structure of the biofilms were characterized and antibacterial properties of films were exam- ined. Owing to its enormous extraction performance using common and cheap chemicals and simple equipment at ambient conditions, the pile processing method has great promise for the keratin bio-waste’s industrially.
机译:根据科学家的说法,角蛋白是世界上纤维素和几丁质之后自然界中最丰富的纤维材料之一。几种自然纤维材料从生物医学的应用到建立部门,尤其是纺织部门的范围广泛。自然纤维在这些扇区中的使用是经济的,可以提高其特定特性,例如抗菌特性,柔韧性,拉伸强度,剪切强度,韧性等。本文呈现了一种新型的角蛋白 - 壳聚糖生物膜,并将角蛋白与角质素分开。浪费鸡羽毛。设计了实验室规模的角蛋白提取过程。研究了角质蛋白的提取百分比(NaOH; NaOH+Na2s; Na2s)的角度萃取百分比,并相互比较以了解反应过程。所选的反应参数是锂浓度,反应时间和温度,以找出它们对角蛋白提取的影响。在60°C和400 rpm的6小时和每5 g鸡羽毛粉末中达到最高的提取值。从鸡羽毛粉中获得角蛋白粉后,将角蛋白和壳聚糖粉末以一定比例混合。之后,将聚乙烯醇添加到角蛋白和壳聚糖的混合物中,直至形成生物膜。表征了生物膜的特性和结构,并检查了膜的抗菌特性。由于其在环境条件下使用常见和廉价化学品以及简单设备的巨大提取性能,桩加工方法对角蛋白生物废物的工业有很大的希望。

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