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Leather solid waste: An eco-benign raw material for leather chemical preparation - A circular economy example

机译:皮革固体废物:皮革化学制剂的生态良性原料 - 循环经济实例

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One of the long lasting problems associated with leather industry is to meet environmental standards for both liquid and solid wastes. Statistics show that one tonne of wet-salted hides/skins yields around 650 kg of solid waste. Among various wastes generated, trimmings for the most part have been underutilized. Collagen presents in trimmings waste are effectively used but hair goes unutilized or at the most as feed for boilers during gelatin manufacturing. Hence, newer technology is needed for complete and effective utilization of raw trimmings. In leather manufacture, formaldehyde condensates polymers are used as re-tanning agent to enhance the compaction of leather. However, these products are hard for biodegradation and also cause the release of free formaldehyde in leather, which is a known carcinogen. Here, there is a need for development of formaldehyde free re-tanning agent for eco-benign leather processing. In this work an attempt had been made to develop formaldehyde free biodegradable eco-benign retanning agent from raw trimming of tannery solid waste as a circular economy model. Alkaline (7.5% w/w NaOH) - hydrogen peroxide (10%w/w) pre-treatment followed by thermal hydrolysis at 100 degrees C for 5 h was an optimized method for effective hydrolysis of trimmings and the process of preparation of product results in the holistic utilization of raw trimmings. The developed product was characterized using Dynamic light scattering and FTIR techniques. The product prepared was further used in leather manufacture as a re-tanning agent and was found to impart multifunctional properties to leathers such as fullness, grain tightness and shade of dye brilliance. Product improves the mechanical strength characteristics of leather and also the exhaustion of post-tanning chemicals. SEM analysis shows that the experimental leather is more compact and flat than control. This novel strategy had not only solved the issue of solid waste but also resulted in a greener leather auxiliary leading to greener environment. (C) 2019 Published by Elsevier Ltd.
机译:与皮革行业相关的持久问题之一是满足液体和固体废物的环境标准。统计数据显示,一吨湿盐皮/皮,产量约为650千克固体废物。在产生的各种废物中,大多数情况下的修剪都未充分利用。胶原蛋白呈现在修剪垃圾中,有效地使用,但在明胶制造期间,头发不利于锅炉的饲料。因此,需要更新的技术来完成生效修剪的利用。在皮革制造中,甲醛缩合物聚合物用作重新鞣剂,以增强皮革的压实。然而,这些产品很难用于生物降解,并且还导致皮革中的游离甲醛释放,这是一种已知的致癌物。在这里,需要开发用于生态良性皮革加工的甲醛免费再鞣制剂。在这项工作中,已经尝试从Tannery固体废物的原始修剪作为循环经济模型来开发甲醛免费生物降解的生态良性转鞣剂。碱性(7.5%w / w naOh) - 过氧化氢(10%w / w)预处理,然后在100℃下热水解5 h是有效水解的优化方法和制备产品结果的方法在原始装饰的整体利用中。使用动态光散射和FTIR技术表征开发的产品。制备的产品进一步用于皮革制造中作为重新鞣剂,并发现赋予染料,粒度,染料亮度的粗糙度的多功能性质。产品改善了皮革的机械强度特性以及晒黑后化学品的耗尽。 SEM分析表明,实验皮革比控制更紧凑且扁平。这种新颖的战略不仅解决了固体废物的问题,而且导致更绿皮革辅助导致更环保的环境。 (c)2019年由elestvier有限公司发布

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