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基于合成纤维的羊毛混纺织物在超临界二氧化碳中的染色

Dyeing of synthetic fiber-based wool blended fabrics in supercritical carbon dioxide.

作者信息

Mousa Abdalla A, Mohamed Fatma A, Abd El-Megied Saadia A, Youssef Yehya A

机构信息

Dyeing, Printing and Textile Auxiliaries Department, Textile Research and Technology Institute, National Research Centre, 33 EL Buhouth St., Dokki, 12622, Giza, Egypt.

出版信息

Sci Rep. 2024 Dec 23;14(1):30604. doi: 10.1038/s41598-024-81417-8.

Abstract

Development of supercritical carbon dioxide (SC-CO) dyeing technology for natural fabrics and their blended fabrics is essential for the textile industry due to environmental and economic considerations. Wool (W), polyester (PET) and nylon (N) fabrics and their wool/polyester (W/PET) and wool/nylon (W/N) blended fabrics were dyed in SC-CO medium with a synthesized reactive disperse dye containing a vinylsulphone (VS) reactive group, which behaves as a disperse dye for synthetic fibers and a reactive dye for protein fibers. The SC-CO dyeing performance of all fabrics was investigated in terms of color strength, fixation, colorimetric and fastness measurements and compared with the conventional aqueous dyeing method. The results obtained indicate that the VS reactive disperse dye structure and non-polar PET component mainly improved colour strength (K/S) values of the dyed PET fabric and W/PET blended fabrics in SC-CO compared with those in the aqueous medium. Also, SC-CO dyeing has a notable influence on a*, b* and C* values of the dyed PET, N and W/PET fabrics and showed that the uptake of the VS reactive disperse dye and their appearance colors are higher and more saturated than the aqueous dyed samples. The levelling and fastness properties of all dyed fabrics in SC-CO medium are similar to those obtained in the aqueous medium. It was observed that VS reactive disperse dye penetrates well into the PET fabric and is chemically bound with the W fabric using both SC-CO and aqueous media and did not display significant color difference (∆E) values of W, PET and W/PET fabrics even after 20 washing cycles. The study claims that the VS reactive disperse dye structure and dyed PET-based wool blended fabric are good candidates for industrially SC-CO dyeing technology.

摘要

出于环境和经济方面的考虑,开发用于天然织物及其混纺织物的超临界二氧化碳(SC-CO₂)染色技术对纺织工业至关重要。羊毛(W)、聚酯(PET)和尼龙(N)织物及其羊毛/聚酯(W/PET)和羊毛/尼龙(W/N)混纺织物在SC-CO₂介质中用一种合成的含有乙烯砜(VS)活性基团的活性分散染料进行染色,该染料对合成纤维起分散染料作用,对蛋白质纤维起活性染料作用。通过色强度、固色率、比色法和色牢度测量等方面研究了所有织物的SC-CO₂染色性能,并与传统的水溶液染色方法进行了比较。所得结果表明,与在水溶液介质中相比,VS活性分散染料结构和非极性PET组分主要提高了SC-CO₂中染色PET织物和W/PET混纺织物的色强度(K/S)值。此外,SC-CO₂染色对染色PET、N和W/PET织物的a*、b和C值有显著影响,结果表明,VS活性分散染料的上染率及其表观颜色比水溶液染色样品更高且更饱和。所有染色织物在SC-CO₂介质中的匀染性和色牢度性能与在水溶液介质中获得的相似。观察到VS活性分散染料在SC-CO₂和水溶液介质中都能很好地渗透到PET织物中,并与W织物发生化学结合,即使经过20次洗涤循环,W、PET和W/PET织物的颜色差异(∆E)值也不显著。该研究称,VS活性分散染料结构和基于PET的羊毛混纺织物是工业SC-CO₂染色技术的良好候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/168f/11666590/eeb7a83b8747/41598_2024_81417_Fig1_HTML.jpg

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