The coloration of polyester fabric with Prangos ferulacea natural dye: new approaches toward a cleaner production

M. Khajeh Mehrizi, Mostafa Jokar, Z. Shahi
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引用次数: 2

Abstract

Purpose Natural colorants are believed to be safe because of their nontoxic, noncarcinogenic and biodegradable nature, and also, the demand for natural dyes is steadily increasing. This study aims to investigate the dyeing of polyethylene terephthalate (PET) fabrics under cold plasma and ultraviolet (UV) radiation conditions with Prangos ferulacea. Design/methodology/approach In the first, some PET fabrics were modified using UV radiation and some others by cold plasma (oxygen/argon), and then the dyeing of fabrics with the natural dye was done (100°C/130°C) without using metallic mordant. Dyeability (color strengths) of the treated samples, colorfastness to washing, light and rubbing, water absorption time, crease recovery angle, air permeability and mechanical behavior were investigated. Findings The maximum color strength (k/s = 4.87) was achieved for the fabric exposed to UV radiation for 2 h and then dyed with Prangos ferulacea at 130 °C. The results indicated that the dyed fabric showed acceptable colorfastness (very good–excellent) properties in washing and rubbing fastness except for colorfastness to light (moderate). The strength and the angle of crease recovery of treated and dyed samples have increased, while the time of water absorption and air permeability have decreased. Originality/value The surface modification of PET (UV radiation and plasma treatment) provides a new idea to improve the dyeability of PET with Prangos ferulacea natural dye without using metallic mordant.
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阿魏草天然染料对涤纶织物的染色:清洁生产的新途径
天然色素因其无毒、无致癌性和可生物降解性而被认为是安全的,而且对天然染料的需求也在稳步增长。研究了冷等离子体和紫外线对聚对苯二甲酸乙二醇酯(PET)织物的染色效果。设计/方法/方法:首先对部分PET织物进行紫外辐照改性,对部分织物进行冷等离子体(氧/氩)改性,然后在不使用金属媒介剂的情况下,用天然染料(100℃/130℃)对织物进行染色。考察了处理后样品的可染性(色强)、耐水洗、耐光、耐摩擦色牢度、吸水时间、折痕恢复角、透气性和力学性能。结果:经紫外线照射2 h后,在130℃的条件下,阿魏草染色后,织物的显色强度达到最大(k/s = 4.87)。结果表明,除耐光色牢度中等外,染色织物的洗涤色牢度和摩擦色牢度均可接受。处理后和染色后试样的强度和折痕恢复角增加,吸水时间和透气性降低。对PET进行表面改性(紫外辐射和等离子体处理),为在不使用金属媒染剂的情况下,利用阿黄天然染料提高PET的可染性提供了新的思路。
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