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Valorization of tannery wastes: Lipoamino acid surfactant mixtures from the protein fraction of process wastewater

机译:制革废料的增值:来自工艺废水蛋白质部分的脂氨基酸表面活性剂混合物

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摘要

The first stages of the transformation process of hides into leather (beamhouse process) generate an important waste in the tanning industry, since a considerable fraction of solubilized proteins ends up in waste water with the corresponding increase in contamination parameters, especially when the process is carried out without hair recovery (hair-pulping process). The objective of this work was the valorisation of this waste (the separated protein fraction) which conveniently hydrolyzed to amino acid level constituted the starting material for the production of biodegradable surfactants. The lipoamino acid surfactants were obtained by acylation of the amino acids from the protein hydrolysate. These surfactants were characterized and their physico-chemical and biological properties evaluated. They exhibit very low cmc values (about 40. mg/L). These surfactants are readily biodegradable and present an aquatic toxicity significantly lower than many common commercial surfactants derived whether from renewable or petrochemical feedstock. The mixtures of surfactants obtained are able to form oil/water emulsions that remain stable for at least 1. year. The results obtained in this work confirmed that it is possible the production of biodegradable and efficient lipoamino acid surfactant mixtures from the protein fraction present in beamhouse process wastewaters. This study constitutes a promising approach for the reduction of the pollution load from industrial tannery wastes and its valorisation as raw material for the production of surfactants with excellent environmental properties and good technical properties.
机译:生皮转化为皮革的过程的第一阶段(草屋过程)在制革业中产生了重要的废物,因为相当一部分可溶解的蛋白质最终会进入废水中,并且污染参数相应增加,尤其是在进行该过程时脱毛而不会脱发(拔毛过程)。这项工作的目的是对这种废物(分离出的蛋白质部分)进行增值处理,这种废物可方便地水解至氨基酸水平,构成了生产可生物降解表面活性剂的原料。脂氨基酸表面活性剂是通过将蛋白质水解物中的氨基酸酰化而获得的。对这些表面活性剂进行了表征,并对它们的理化和生物学特性进行了评估。它们显示出非常低的cmc值(约40. mg / L)。这些表面活性剂易于生物降解,其水生毒性明显低于许多可再生或石化原料衍生的常见商业表面活性剂。所获得的表面活性剂混合物能够形成油/水乳液,保持至少一年的稳定性。在这项工作中获得的结果证实,有可能由存在于束流工艺废水中的蛋白质部分生产可生物降解的高效脂氨基酸表面活性剂混合物。这项研究为减少工业制革废料的污染负荷以及将其作为生产具有优异环境特性和良好技术特性的表面活性剂的原材料进行了增值增值提供了一种有前途的方法。

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