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Hybrid composites: amalgamation of proteins with polymeric phenols as a multifunctional material for leather processing

机译:杂化复合材料:蛋白质与高分子酚的混合,作为皮革加工的多功能材料

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In recent years, blending various protein wastes has resulted in the development of new hybrid composites, which display innovative functionalities with superior physico-chemical properties. One of the options explored in this work is the suitable modification of collagen hydrolysate (waste from the leather industry) along with degraded black liquor from the paper and pulp industry. In detail, the preparation of hybrid composites from collagen hydrolysates and degraded black liquor of different pH (14 and 7) was performed through a simple process. The characteristic features of the composites were thoroughly investigated by Fourier transform infrared spectroscopy (FTIR), dynamic light scattering (DLS) using a Malvern Zetasizer and scanning electron microscopy (SEM). The multifunctionality of the hybrid composites provided the opportunity to utilize this type of composite as a retanning agent in leather processing. The composites also exhibited enhanced functional properties as well as improved dyeing, thus making them a better retanning agent. The composite treated leather shows good softness, improved belly filling, and high strength with uniform dyeing. Hence, the potential use of multifunctional hybrid composites has gained more importance in economic processing.
机译:近年来,各种蛋白质废物的掺混导致了新型杂化复合材料的开发,这些杂化复合材料显示出具有出色物理化学性能的创新功能。在这项工作中探索的选择之一是对胶原蛋白水解产物(皮革行业的废物)以及造纸和纸浆行业的降解黑液进行适当的改性。详细地,由胶原蛋白水解物和不同pH(14和7)的降解黑液制备杂化复合材料的过程很简单。通过傅立叶变换红外光谱(FTIR),使用Malvern Zetasizer进行的动态光散射(DLS)和扫描电子显微镜(SEM)彻底研究了复合材料的特征。杂化复合材料的多功能性提供了将这种类型的复合材料用作皮革加工中的复鞣剂的机会。该复合材料还表现出增强的功能性能以及改善的染色性,因此使其成为更好的复鞣剂。经过复合材料处理的皮革显示出良好的柔软度,改善的腹部填充和高强度,且染色均匀。因此,多功能杂化复合材料的潜在用途在经济加工中变得越来越重要。

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