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Evaluation of cotton-fabric bleaching using hydrogen peroxide and Blue LED

机译:使用过氧化氢和蓝色LED评估棉织物漂白

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The raw cotton production requires multiple steps being one of them the removal of impurities acquired during previous processes. This procedure is widely used by textile industries around the world and is called bleaching. The raw cotton is composed by cellulosic and non-cellulosic materials like waxes, pectins and oils, which are responsible for its characteristic yellowish color. The bleaching process aims to remove the non-cellulosic materials concentration in the fabric, increasing its whiteness degree. The most used bleaching method utilizes a bath in an alkali solution of hydrogen peroxide, stabilizers and buffer solutions under high temperature. In the present study we evaluated the possibility of using a blue illumination for the bleaching process. We used blue LEDs (450 nm) to illuminate an acid hydrogen peroxide solution at room temperature. The samples treated by this method were compared with the conventional bleaching process through a colorimetric analysis and by a multiple comparison visual inspection by volunteers. The samples were also studied by a tensile test in order to verify the integrity of the cloth after bleaching. The results of fabric visual inspection and colorimetric analysis showed a small advantage for the sample treated by the standard method. The tensile test showed an increasing on the yield strength of the cloth after blue light bleaching. The presented method has great applicability potential due to the similar results compared to the standard method, with relative low cost and reduced production of chemical waste.
机译:原棉生产需要多个步骤,其中一个步骤是除去先前过程中获得的杂质。该程序被全世界的纺织工业广泛使用,被称为漂白。原棉由纤维素和非纤维素材料(如蜡,果胶和油)组成,这是其特有的淡黄色的原因。漂白过程旨在去除织物中非纤维素材料的浓度,从而提高其白度。最常用的漂白方法是在高温下于过氧化氢,稳定剂和缓冲溶液的碱性溶液中使用浴液。在本研究中,我们评估了在漂白过程中使用蓝色照明的可能性。我们使用蓝色LED(450 nm)在室温下照亮酸性过氧化氢溶液。通过比色分析和志愿者的多次目测比较,将用这种方法处理的样品与常规漂白工艺进行比较。还通过拉伸试验研究样品,以验证漂白后布的完整性。织物外观检查和比色分析的结果表明,采用标准方法处理的样品具有较小的优势。拉伸试验表明,蓝光漂白后,布的屈服强度增加。与标准方法相比,该方法具有相似的结果,具有相对较高的成本和较低的化学废物产生量,因此具有很大的应用潜力。

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