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Greener approach to efficient leather soaking process: role of enzymes and their synergistic effect

机译:更有效地皮革浸泡过程的绿色方法:酶的作用及其协同作用

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摘要

Enzymes have been used as one of the most promising substitutes for traditional chemicals in soaking process. In this work, three alkaline proteases, TanG, LimeG and FP50, were used in skin soaking process to select appropriate enzymes. Then the pre-optimized enzymes and additives were mixed to prepare a soaking compound enzyme (KRE). The optimal temperature and pH of the compound enzyme were determined. Finally, the KRE was used in skin soaking process and compared with commercial soaking enzyme (CSE). Environmental impact of KRE was assessed. Protein and hydroxyproline absorbance in soaking bath were chosen as the indexes of the degree of enzymatic hydrolysis to protein and collagen of skin. The results indicated that the combination of TanG and LimeG had a good synergistic effect in soaking process. The optimal temperature of KRE was obtained. KRE had high activity at alkaline pH. Compared with CSE, KRE had stronger hydrolytic action to protein in the skin, but the damage to collagen was of no significant difference from that of CSE. The reduction in turbidity, suspended solids (SS), Biochemical oxygen demand (BOD_5) and Chemical oxygen demand (COD_(Cr)) content in KRE soaking effluent compared to CSE soaking was evident from environmental impact assessment. Moreover, the BOD_5/COD_(Cr)cr of KRE soaking liquor was 0.8976 which indicated that the wastewater was biodegradable. The KRE soaking wastewater would not increase contaminants of the total tanning wastewater significantly. KRE can be regarded as eco-friendly material, reducing the environmental impacts and contributing to the development of cleaner leather processing.
机译:在浸泡过程中,酶已被用作最有希望替代传统化学品的替代品之一。在这项工作中,三种碱性蛋白酶,TanG,LimeG和FP50被用于皮肤浸泡过程中以选择合适的酶。然后将预先优化的酶和添加剂混合,以制备浸泡复合酶(KRE)。确定了复合酶的最佳温度和pH。最后,将KRE用于皮肤浸泡过程,并与商业浸泡酶(CSE)进行了比较。评估了KRE的环境影响。选择浸泡浴中蛋白质和羟脯氨酸的吸光度作为酶解皮肤蛋白质和胶原蛋白的程度的指标。结果表明,TanG和LimeG的组合在浸泡过程中具有良好的协同作用。获得了KRE的最佳温度。 KRE在碱性pH值下具有很高的活性。与CSE相比,KRE对皮肤中的蛋白质具有更强的水解作用,但对胶原蛋白的损伤与CSE相比无显着差异。从环境影响评估中可以明显看出,与CSE浸泡相比,KRE浸泡废水的浊度,悬浮固体(SS),生化需氧量(BOD_5)和化学需氧量(COD_(Cr))含量降低。另外,KRE浸泡液的BOD_5 / COD_(Cr)cr为0.8976,表明废水具有生物降解性。 KRE浸泡废水不会显着增加总制革废水中的污染物。 KRE可被视为环保材料,可减少对环境的影响并有助于发展更清洁的皮革加工工艺。

著录项

  • 来源
    《Journal of Cleaner Production》 |2014年第1期|226-232|共7页
  • 作者单位

    College of Resources & Environment, Shaanxi University of Science & Technology, Xi'an 710021 Shaanxi Province, PR China,Key Laboratory of Amxiliary Chemistry and Technology for Chemical Industry, Ministry of Education, Shaanxi University of Science & Technology,Xi'an 710021 Shaanxi Province, PR China;

    College of Resources & Environment, Shaanxi University of Science & Technology, Xi'an 710021 Shaanxi Province, PR China;

    College of Resources & Environment, Shaanxi University of Science & Technology, Xi'an 710021 Shaanxi Province, PR China;

    College of Resources & Environment, Shaanxi University of Science & Technology, Xi'an 710021 Shaanxi Province, PR China;

    College of Resources & Environment, Shaanxi University of Science & Technology, Xi'an 710021 Shaanxi Province, PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Leather soaking; Compound enzyme; Synergistic effect; Biodegradable;

    机译:皮革浸泡;复合酶协同效应;可生物降解;

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