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Aqueous MEA and Ammonia Sorption-Induced Damage inKeratin Fibers

机译:MEA和氨吸收引起的MEA损伤。角蛋白纤维

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摘要

The sorption of aqueous monoethanolamine (MEA) and ammonia solutions in keratin fibers and its subsequent effect on their mechanical performance has been investigated. The diffusion kinetics of MEA into keratin fibers for 0.1, 1.0, and 5 v/v % MEA in water at 30 and 50 °C were found to exhibit two clear regimes of absorption behavior: a linear Fickian diffusion regime for initial times up to 100 min, after which a second slower uptake process was observed. Single fiber tensile tests showed that the Young's modulus and the tensile failure stress for 5% MEA-treated fibers, compared to untreated fibers, were 25% lower after 1 h of treatment and 50% lower after 9 h of treatment. Aqueous treatments of 0.1 and 1% MEA, as well as 0.6 and 3% aqueous ammonia, had no measurable effect on either Young’s modulus or tensile failure stress for the fibers. Scanning electron microscopy images and protein content analysis confirmed that keratin fibers exposed to 5% MEA solution exhibited significant surface damage aswell as high levels of protein loss. This study confirms for the firsttime the important damage hair treatments containing 5% aqueous MEAcan cause on keratin fibers.
机译:研究了角蛋白纤维中单乙醇胺水溶液(MEA)和氨溶液的吸附及其对机械性能的后续影响。发现MEA在30和50°C的水中于0.1、1.0和5 v / v%MEA在水中的MEA中向角蛋白纤维中的扩散动力学表现出两种清晰的吸收行为机制:初始时间达100的线性Fickian扩散机制分钟,然后观察到第二个较慢的吸收过程。单纤维拉伸试验表明,与未经处理的纤维相比,经5%MEA处理的纤维的杨氏模量和拉伸破坏应力在处理1小时后降低25%,在处理9小时后降低50%。 0.1%和1%MEA的水处理以及0.6%和3%的氨水对纤维的杨氏模量或拉伸破坏应力均无可测量的影响。扫描电子显微镜图像和蛋白质含量分析证实,暴露于5%MEA溶液的角蛋白纤维表现出明显的表面损伤,因为以及高水平的蛋白质损失。这项研究证实了第一个含有5%的MEA的头发的重要损伤护理时间会导致角蛋白纤维。

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