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Reuse of effluent from dyeing process of polyamide fibers modified by double barrier discharge (DBD) plasma

机译:再利用双壁垒放电(DBD)等离子体改性聚酰胺纤维染色过程中的废水

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摘要

Low-temperature plasma technology becomes more and more attractive compared with traditional wet processes in textile preparation and finishing due to its high efficiency and low environmental impact. The objective of this study was to investigate the influence of dielectric barrier discharge plasma treatment on the trichromic dyeing process of polyamide 6.6 (PA66) and the reuse of the generated effluents for new dyeing processes. Chemical and physical characterization of the plasma-treated polyamide fibers was studied by means of static and dynamic contact angle, X-ray photoelectron spectroscopy (XPS), scanning electron microscopy micrographs, and atomic force microscopy (AFM). Plasma treatment greatly increases the hydrophilicity and adhesion of PA66, due to the increase of polar groups and roughness on the fibers surface as confirmed by XPS and AFM. The kinetics of dyeing is quicker but leveled with high rubbing, light, and washing fastness quality. The reuse of the effluent obtained after dyeing of the plasma-treated fabrics showed excellent results of reproducibility, uniformity, and washing fastness. It was possible to reproduce the standard color for three dyeing cycles using the same effluent reducing the effluent load with a significant diminution in costs and environmental impact.
机译:与传统的湿法工艺相比,低温等离子技术在纺织品的制备和整理中具有更高的效率和较低的环境影响,因此越来越具有吸引力。这项研究的目的是研究电介质阻挡放电等离子体处理对聚酰胺6.6(PA66)的三色染色过程的影响以及所产生的废水在新的染色过程中的再利用。通过静态和动态接触角,X射线光电子能谱(XPS),扫描电子显微镜照片和原子力显微镜(AFM)研究了等离子体处理过的聚酰胺纤维的化学和物理特性。等离子体处理极大地提高了PA66的亲水性和附着力,这是由于XPS和AFM证实了极性基团的增加和纤维表面的粗糙度。染色的动力学速度更快,但具有较高的耐摩擦性,耐光性和耐洗牢度。对经过等离子处理的织物进行染色后获得的废水再利用显示出优异的再现性,均匀性和耐洗牢度。使用相同的废水,可以在三个染色周期内重现标准颜色,从而减少了废水负荷,同时显着降低了成本和对环境的影响。

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