首页> 外文期刊>Journal of the Society of Leather Technologists and Chemists >Evaluation of Collagen Hydrolysate on the Performance Properties of Different Wet-White Tanned Leathers
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Evaluation of Collagen Hydrolysate on the Performance Properties of Different Wet-White Tanned Leathers

机译:胶原水解产物对不同湿白色鞣制皮革的性能性能的评价

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Tanning with basic chromium sulphate is the most commercially favoured process in the manufacture of a variety of high quality leathers. Environmental restrictions to the disposal of chromium containing solids and effluents, as well as speculations concerning the presence of toxic and carcinogenic chromium(VI) traces in leather products, have already directed the industry towards using alternatives. Wet-white tannages which consist of zirconium (IV) and aluminium (III) salts with high durability and resistance and organic alternatives which use phosphonium, aldehydes and some syntans both types with more eco friendly and biodegradable characteristics seem to be the main options for industry. However, properties like high hydrothermal stability, tensile strength, and thickness cannot be achieved by any alternative single tanning method. In this study, collagen hydrolysates derived from gelatin manufacture were used to improve wet-white leather performance properties through combination with tanning agents comprising zirconium and aluminium salts, phosphonium salts and aldehydes. The result shows that the apparent density, shrinkage temperature, denaturation temperature and strength properties of differently tanned leathers increased with the addition of collagen hydrolysates. SEM analyses show that collagen fibres are dispersed after tanning. Besides, collagen hydrolysates make the fibres loosen and the fullness of leather is increased.
机译:鞣制具有碱性硫酸铬是制造各种高品质皮革的最优惠的工艺。对含有固体和污水处理的环境限制,以及关于皮革制品中有毒和致癌铬(VI)痕迹的簇,已经指导了该行业使用替代品。由锆(IV)和铝(III)盐组成的湿白鞣制具有高耐久性和耐药性和使用鏻,醛和一些舞蹈的有机替代品,两种类型具有更多的ECO友好和可生物降解的特征似乎是行业的主要选择。然而,通过任何替代的单一鞣制方法不能实现高水热稳定性,拉伸强度和厚度等性质。在该研究中,通过与包含锆和铝盐,鏻盐和醛的鞣制剂的组合,使用衍生自明胶制造的胶原水解产物来改善湿白皮革性能性能。结果表明,随着胶原水解产物的添加,不同鞣制皮革的表观密度,收缩温度,变性温度和强度性能增加。 SEM分析表明,塑料在晒黑后分​​散。此外,胶原蛋白水解产物使纤维松动,皮革充满活力增加。

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