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首页> 外文期刊>Waste and biomass valorization >Alkaline Hydrolysis of Chromium Tanned Leather Scrap Fibers and Anaerobic Biodegradation of the Products
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Alkaline Hydrolysis of Chromium Tanned Leather Scrap Fibers and Anaerobic Biodegradation of the Products

机译:铬鞣革废料纤维的碱性水解和产品的厌氧生物降解

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摘要

Chromium tanned leather wastes fibers are difficult to manage by chemical and biological processes due to the strong bonds established between collagen and chromium. Therefore, it is of great interest to develop treatments that disrupt recalcitrant bonds and may open new perspectives to materials valorization. A temperature and pressure-assisted alkaline hydrolysis method has been studied. The effects of sodium hydroxide concentration, temperature, holding time and leather fibers to solution ratio on organic matrix destruction, chromium dissolution and anaerobic biodegradability of hydrolyzates obtained are reported. The more suitable conditions found are leather fibers treatment at 423 K for 1.5 h with NaOH 4 mol/L solution and solid to liquid (S/L) ratio (w/w) of 0.15 or 0.2. Under these conditions, more than 98 % of the leather and 85 % of chromium were dissolved. The hydrolyzates may be used in the leather process and show anaerobic biodegradability mostly in the range of 20-30 %. This work establishes an alternative route of treatment that promotes fast destruction of chromium tanned leather scrap, and may avoid its landfilling, contributing to recover part of resources contained in leather waste.
机译:铬鞣革废料纤维由于胶原蛋白和铬之间的牢固结合而难以通过化学和生物方法处理。因此,开发能够破坏顽固性键并可能为材料增值开辟新视野的治疗方法引起了极大的兴趣。研究了温度和压力辅助的碱性水解方法。报道了氢氧化钠浓度,温度,保持时间和皮革纤维与溶液的比例对所得水解产物的有机基质破坏,铬溶解和厌氧生物降解性的影响。发现更合适的条件是用4 mol / L NaOH溶液在423 K下将皮革纤维处理1.5 h,固液比(w / w)为0.15或0.2。在这些条件下,溶解了98%以上的皮革和85%的铬。水解产物可用于皮革工艺中,并显示出厌氧生物降解性,大部分在20%至30%的范围内。这项工作建立了另一种处理途径,可以促进快速销毁鞣制铬的皮革废料,并可以避免将其填埋,从而有助于回收皮革废料中包含的部分资源。

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