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Development of a flexible composite from leather industry waste and evaluation of their physico-chemical properties

机译:用皮革工业废料开发柔性复合材料并对其理化性质进行评估

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Worldwide leather industry is known to cause high degree of pollution such as soil and water contamination. Dyed trimming, a leather industry waste, is often dumped near the industrial site and is used for land filling. Recycling of such industrial wastes for making useful products by substituting leather has been investigated and reported here. Flexible composite sheets were made from dyed trimmings only and also in combination with natural fibres in various blend ratios. Wastes from jute and cotton were used as sources of natural fibres. The composite sheets showed maximum tensile strength and breaking loads at 50:50 blend ratios of dyed trimmings and natural fibres. The ultimate tensile strength, elongation, double fold, bursting strength, density and water and oil absorption characteristics of the composite sheets were determined as per American Society for Testing and Materials and Indian Standard methods. The products, i.e. the composite sheets, and the starting materials, i.e. the dyed trimmings and jute and cotton fibres, were also characterized by Fourier transform infrared spectroscopy, thermogravimetric analysis and scanning electron microscopy. Energy-dispersive X-ray analysis of both untreated and treated dyed trimmings was carried out and the presence of chromium 2.54% in untreated samples was recorded but the sample treated with NaOH did not show the presence of chromium. The natural fibre significantly improves the mechanical strength and thermal properties of the blended composite sheets with the increase in flexibility. These flexible sheets possess higher physical strength as compared to leather and may be used as leather substitute for making apparels and goods.
机译:众所周知,全世界的皮革工业会引起高度的污染,例如土壤和水污染。染色后的修整料是皮革工业的一种废料,通常被倾倒在工业现场附近,用于填埋。在此已经研究并报道了回收这些工业废物以替代皮革来制造有用产品的过程。柔性复合材料片材仅由染色的饰边制成,并且还与天然纤维以各种混合比例组合而成。黄麻和棉花的废料被用作天然纤维的来源。复合片在染色的饰边和天然纤维的混合比为50:50时显示出最大的拉伸强度和断裂载荷。复合片材的极限拉伸强度,伸长率,双折,破裂强度,密度以及吸水和吸油特性是根据美国材料试验学会和印度标准方法确定的。还通过傅立叶变换红外光谱,热重分析和扫描电子显微镜对产物即复合片材和起始材料即染色毛边,黄麻和棉纤维进行了表征。对未处理和处理过的染料进行了能量色散X射线分析,记录了未处理样品中铬的含量为2.54%,但是用NaOH处理过的样品未显示铬的存在。天然纤维显着改善了共混复合片材的机械强度和热性能,同时增加了柔韧性。与皮革相比,这些柔性片具有更高的物理强度,并且可用作制造服装和商品的皮革替代品。

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