利用低温氮等离子体技术对酸性染料棉织物的可染性进行环保处理

K. Mostafa, H. Ameen, A. Medhat
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引用次数: 0

摘要

目的利用低温氮等离子体在棉织物表面生成含氮基团,这是一种生态友好的物理/零排放工艺。这是为了用酸性蓝284使棉花染色而做的,实际上,酸性蓝284对棉花没有任何直接的亲和力。设计/方法/方法确定染色样品的染色特性,如颜色强度(K/S)、耐光性、摩擦性、排汗性和耐久性,以及拉伸强度、断裂伸长率、白度、失重和润湿性,以及染色样品的zeta电位,并与未经处理的织物进行比较。利用傅里叶变换红外光谱(FTIR)和马尔文Zetasizer仪器分析,通过化学修饰和zeta电位对等离子体处理样品进行了确认和表征。结果等离子体处理织物的结果反映了以下发现:FTIR结果表明棉织物上形成了含氮基团;与未经处理的织物相比,处理后的织物润湿性显著提高,zeta电位更大,可染性和整体牢度性能也有所改善;等离子体处理后织物的抗拉强度、断裂伸长率、白度和重量%均低于未处理织物;等离子体处理织物的耐久性随着洗涤次数的增加而降低。原创性/价值这里的新颖性是通过氮等离子体处理在棉织物表面产生新的阳离子含氮基团,从而使棉织物可以用酸性染料染色,这是一种环保高效的物理/零排放工艺工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harnessing of low-temperature nitrogen plasma technique as an eco-friendly approach for dye-ability of cotton fabric with acid dye
Purpose The purpose of this paper is to generate nitrogen-containing groups in the cotton fabric surface via low-temperature nitrogen plasma as an eco-friendly physical/zero-effluent process. This was done for rendering cotton dye-able with Acid Blue 284, which in fact does not have any direct affinity to fix on it. Design/methodology/approach Dyeing characteristics of the samples such as color strength (K/S), fastness properties to light, rubbing and perspiration and durability, as well as tensile strength, elongation at break, whiteness, weight loss and wettability in addition to zeta potential of the dyed samples, were determined and compared with untreated fabric. Confirmation and characterization of the plasma-treated samples via chemical modifications and zeta potential was also studied using Fourier transform infrared spectroscopy (FTIR) and Malvern Zetasizer instrumental analysis. Findings The obtained results of the plasma-treated fabric reflect the following findings: FTIR results indicate the formation of nitrogen-containing groups on cotton fabrics; notable enhancement in the fabric wettability, zeta potential to more positive values and improvement in the dyeability and overall fastness properties of treated cotton fabrics in comparison with untreated fabric; the tensile strength, elongation at break, whiteness and weight % of the plasma treated fabrics are lower than that untreated one; and the durability of the plasma treated fabric decreased with increasing the number of washing cycles. Originality/value The novelty addressed here is rendering cotton fabrics dye-able with acid dye via the creation of new cationic nitrogen-containing groups on their surface via nitrogen plasma treatment as an eco-friendly and efficient tool with a physical/zero-effluent process.
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