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Minimization of the Environmental Impact of Leather Processing: A Benign and Enzyme-based Integrated Leather Processing Technology

机译:最小化皮革加工的环境影响:一种良性和基于酶的综合皮革加工技术

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Traditional leather processing posed great threat to the environment due to its numerous do-undo procedures and use of tremendous amount of chemicals, especially toxic reagents such as sulfides, lime, ammonium salts, etc. To minimize the pollution loads and avoid using unsafe substances in leather manufacturing, an enzyme-based dehairing and fiber opening, silicate pretreating, liming-deliming-bating free chrome tanning and post-tanning integrated leather processing technology has been achieved using biocatalysts for goatskins under slight basic condition. It has been found that the extent of hair removal, opening up of fiber bundles and shrinkage temperatures of crust leather are comparable to that produced by traditional methods. Scanning electron microscopic analysis, determination of physical-mechanical properties and organoleptic evaluation further verify that performance of the leathers is on par with conventionally processed leathers. Most important is that, reductions in water consumption, wastewater discharge, COD and TS loads are in the order of 60% when compared to conventional leather processing. Thus, the developed leather manufacturing technology offers immense potential for greener production of skins and hides to leather coupled with environmental excellence.
机译:传统皮革加工由于其许多DO-UNDO程序和使用巨大的化学品,特别是毒性,含有硫化物,石灰,铵盐等,因此对环境构成了很大的威胁。以最大限度地减少污染载荷并避免使用不安全的物质皮革制造,基于酶的Dehairing和纤维开口,硅酸盐预处理,黎明划分的自由铬鞣制和晒黑后的综合皮革加工技术已经在轻微的基本条件下使用生物催化剂来实现羊砂。已经发现,脱毛的程度,开放的纤维束和地壳皮革的收缩温度与传统方法产生的相当。扫描电子显微镜分析,物理机械性能的测定和感官评估进一步验证皮革的性能与传统加工的皮革相提并论。最重要的是,与传统皮革加工相比,耗水量,废水放电,COD和TS负荷的载荷量为60%。因此,开发的皮革制造技术提供了绿色生产皮肤的巨大潜力,并将皮革与环境卓越相加。

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