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Graft Polymerization of Native Chicken Feathers for Thermoplastic Applications

机译:用于热塑性应用的天然鸡羽毛的接枝聚合

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Inexpensive and biodegradable thermoplastics were developed through graft polymerization of native chicken feather with methyl acrylate as a potential substitute for petroleum products. Poultry feathers are available in large quantities at a low price. However, natural chicken feathers have poor thermoplastidty, cannot be used to develop thermoplastic products, have very limited industrial applications, and are often considered as solid wastes. In this research, the effects of graft polymerization conditions, such as molar ratio of NaHSO3 to K2S2O8, initiator and monomer concentrations, pH, temperature and time of polymerization, on grafting parameters, that is, the conversion of monomer to polymer, grafting percentage, and grafting efficiency were evaluated. Methyl acrylate was found to be successfully grafted onto functional groups on the surfaces of the chicken feathers, and optimal graft polymerization conditions were also obtained. The feather-g-poly(methyl acrylate) developed showed good thermoplastidty, and feather films had substantially higher tensile properties than soy protein isolate and starch acetate films.
机译:廉价的,可生物降解的热塑性塑料是通过天然鸡毛与丙烯酸甲酯作为石油产品的潜在替代品的接枝聚合反应而开发的。家禽羽毛价格低廉。然而,天然鸡毛的热塑性差,不能用于开发热塑性产品,工业应用非常有限,并且通常被视为固体废物。在这项研究中,接枝聚合条件(例如NaHSO3与K2S2O8的摩尔比,引发剂和单体的浓度,pH,聚合温度和聚合时间)对接枝参数的影响,即单体向聚合物的转化率,接枝率,评估了接枝效率。发现丙烯酸甲酯成功地接枝到了鸡毛表面的官能团上,并且还获得了最佳的接枝聚合条件。所开发的羽毛-g-聚(丙烯酸甲酯)显示出良好的热塑性,并且羽毛膜具有比大豆分离蛋白和乙酸淀粉膜更高的拉伸性能。

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