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Ecofriendly lime and sulfide free enzymatic dehairing of skins and hides using a bacterial alkaline protease

机译:使用细菌性碱性蛋白酶对皮肤和生皮进行无石灰和硫化物的环保酶促脱毛

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The ever-increasing attention to the environmental impact of leather industry has necessitated the development of enzyme-based processes as potent alternatives to pollution causing chemicals. In this study, a hair saving process is developed for dehairing of skins and hides using a bacterial alkaline protease preparation, completely eliminating the use of lime and sulfide. To evaluate the efficacy of the enzymatic process, comparative studies have been carried out with two controls; a conventional lime-sulfide process and enzyme-assisted process using commercial dehairing enzyme with reduced quantities of lime and sulfide. The developed process requires a shorter duration of 6 h for complete dehairing of skins and hides than control groups and also, it avoids the use of silicate carriers since the enzymatic dehairing is carried out by dip method. Histological and scanning electron microscopic analyses of the dehaired pelts obtained from enzymatic process reveal complete removal of hair and epidermis with moderate opening up of fiber structure in both dermis and corium. Moreover, the collagen is not damaged and resulting in a leather of good quality. The developed process has resulted in a remarkable reduction of effluent load in terms of biochemical oxygen demand, chemical oxygen demand, total dissolved solids and total suspended solids. Physicochemical studies conclusively show that the leathers produced by enzymatic process are equivalent to or better than that obtained by control systems. Thus, the developed enzymatic process offers immense potential for greener mode of dehairing of skins and hides in leather industry coupled with environmental excellence.
机译:对皮革工业的环境影响的日益关注,已使开发基于酶的工艺成为污染化学物质的有效替代品成为必要。在这项研究中,采用细菌碱性蛋白酶制剂开发了一种脱毛工艺,用于对皮肤和生皮进行脱毛,从而完全消除了对石灰和硫化物的使用。为了评估酶促过程的功效,已经在两个对照下进行了比较研究;使用商业脱毛酶并减少石灰和硫化物的量的常规石灰硫化物方法和酶辅助方法。与对照组相比,所开发的方法需要6小时的较短时间才能完全脱皮和生皮,而且由于酶法脱毛是通过浸入法进行的,因此避免了使用硅酸盐载体。从酶促过程获得的脱毛兽皮的组织学和扫描电子显微镜分析显示,在真皮和真皮中纤维结构适度开放的同时,毛发和表皮已被完全去除。而且,胶原蛋白没有被破坏并且导致了高质量的皮革。在生化需氧量,化学需氧量,总溶解固体和总悬浮固体方面,已开发的工艺已显着降低了废水负荷。物理化学研究最终表明,通过酶促工艺生产的皮革与通过控制系统获得的皮革相当或更好。因此,发达的酶促工艺为皮革工业中的皮革和生皮的脱毛提供了更绿色的模式,同时又具有出色的环境潜力。

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