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首页> 外文期刊>The Journal of the American Leather Chemists Association >Tanning Process Study Using Chestnut and Acacia Tannin Associated with Acrylic Resin
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Tanning Process Study Using Chestnut and Acacia Tannin Associated with Acrylic Resin

机译:栗子和相思单宁与丙烯酸树脂制革的鞣制工艺研究

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Chromium is the most commonly used tanning agent in the leather industry worldwide due to the good characteristics it adds to the leather. However, it is known that chromium III may oxidize to chromium VI and damage the environment. Based on this context, the industry has vegetable tanning as one of the options that provide leather with different characteristics when compared to the characteristics provided by tanning with salts of chromium. Thus, this study intends to develop a product which is combined with vegetable tanning and brings better characteristics to chrome-free leather. This process raises the quality of the final product, that is, it improves the tanning by combining tannins (acacia and chestnut) with acrylic resin. The methodology consisted of employing six different tanning processes. Firstly, the tanning agents were used alone; secondly, there was the addition of acrylic resin; and, finally, the use of the acrylic resin with tannins. Organoleptic properties, light fastness, shrinkage temperature, and physical-mechanical tests were performed in order to test the quality of the leathers obtained. In the residual baths, chemical oxygen demand (COD), biochemical oxygen demand (BOD), total nitrogen, and total solids were evaluated. Based on the results obtained, it was possible to conclude that the best results were found with the use of chestnut tannin and acrylic resin separately and with the use of acacia mixed with chestnut tannin, which demonstrated that combined vegetable tanning can be an alternative to the production of chrome-free leather with good properties.
机译:铬是皮革行业中最常用的鞣革剂,因为它具有皮革的优良特性。但是,已知铬III可能氧化成铬VI并破坏环境。基于此背景,与用铬盐鞣制所提供的特性相比,该行业将植物鞣制作为使皮革具有不同特性的一种选择。因此,本研究旨在开发一种与植物鞣制相结合并为无铬皮革带来更好特性的产品。此过程提高了最终产品的质量,也就是说,通过将单宁(阿拉伯树胶和栗子)与丙烯酸树脂结合使用,改善了鞣革效果。该方法包括采用六种不同的鞣制工艺。首先,鞣剂单独使用;其次,加入丙烯酸树脂。最后,将丙烯酸树脂与单宁一起使用。进行了感官特性,耐光性,收缩温度和物理机械测试,以测试所得皮革的质量。在残留浴中,对化学需氧量(COD),生化需氧量(BOD),总氮和总固体进行了评估。根据获得的结果,可以得出结论,分别使用栗单宁和丙烯酸树脂以及将阿拉伯胶与栗单宁混合使用可以发现最佳结果,这表明联合使用植物鞣制可以替代栗单宁。生产具有良好性能的无铬皮革。

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