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A comprehensive evaluation of physical and environmental performances for wet-white leather manufacture

机译:湿白皮革制造的物理和环境表演综合评价

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摘要

This paper presents the comprehensive evaluation results of physical and environmental performances for a novel wet-white (chrome-free) leather manufacturing. The tanning process is optimized as 15 wt% tannic acid (TA) combination with 4 wt% Laponite nanoclay, giving the leather with shrinkage temperature (Ts) above 86 °C. Inductively coupled plasma-atomic emission spectrometry (ICP-AES) measurements indicate that Laponite can be evenly and tightly bound within the leather matrix, which is further confirmed by scanning electron microscopy and energy dispersive X-ray (SEM-EDX) spectroscopy analysis. The resultant wet-white leathers have reasonable good physical properties that can meet the standard requirements for furniture leather without containing hazardous Cr(VI) and formaldehyde. Further life cycle assessment (LCA) studies shows that tanning process is the main contributor to environmental impact categories in the wet-white tanning process, and tannic acid is the most significant substance factor. Compared to conventional chrome tanning, the wet-white tanning process exhibits much lower abiotic depletion potential (ADP), and reduced global warming potential (GWP) and human toxicity potential (HTP) impacts due to the nature of vegetable tanning; whereas, GWP excluding biogenic carbon and energy consumption are higher owing to prolonged run time.
机译:本文介绍了物理和环境性能综合评价结果为一种新型的白湿(无铬)皮革制造。鞣制过程被优化为15重量%的单宁酸(TA)结合4重量%的合成锂皂石纳米粘土,赋予与上述86℃的收缩温度(Ts)的皮革。电感耦合等离子体 - 原子发射光谱法(ICP-AES)测量表明,合成锂皂石可以在皮革基质,它是由扫描电子显微镜和能量分散型X射线(SEM-EDX)分析光谱进一步确认内被均匀地和紧密地结合。将所得的白湿皮革具有能够满足家具革的标准要求,而不含有有害的Cr(VI)和甲醛合理良好的物理性能。进一步生命周期评估(LCA)的研究表明,鞣制方法的主要贡献者环境影响类别下的白湿鞣制方法,和单宁酸是最显著物质因素。相比传统的铬鞣,湿法白鞣制方法表现出低得多的非生物消耗潜势(ADP),和降低的全球变暖潜能(GWP)和人体毒性潜力(HTP)由于植物鞣的性质影响;而,GWP不包括生物碳和能量消耗都更高由于延长运行时间。

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