Acid dye composition
A technology of acid dyes and compositions, applied in the direction of organic dyes, etc., can solve the problems that there are no dye composition patents published, and achieve the effect of improving the fastness of wet treatment
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Embodiment 1
[0033] Weigh 200g of C.I. Acid Orange 116 (200%), 150g of maltodextrin, and 1g of benzoic acid, and mix them uniformly to obtain 351g of a high-performance acid dye composition. When the dye composition is used for dyeing polyamide fibers, it can achieve 100% exhaustion rate and excellent fastness performance.
[0034] Example 1~10.
[0035] example
Embodiment 2
[0037] Weigh 200g of C.I. Acid Red 114 (300%), 200g of enzyme-catalyzed hydrolyzed starch, and 1.2g of benzoic acid, and mix them uniformly to obtain 401.2g of a high-performance acid dye composition. The dye composition is used for dyeing Taslon (Taslon) fiber, which can achieve 100% exhaustion rate and excellent fastness performance. The ratio of four or more sugars in the enzyme-catalyzed hydrolyzed starch is 85-100%, trisaccharides are 0-15%, disaccharides are 0-10%, and monosaccharides are 0-5.0%.
[0038] Example 11~20.
[0039] example
Embodiment 3
[0041] Weigh 200g of C.I. Acid Red 114 and 40g of Acid Red 361 raw dye, 60g of enzyme-catalyzed hydrolyzed starch, and 0.9g of benzoic acid, and mix them uniformly to obtain 300.9g of a high-performance acid dye composition. When the dye composition is used for dyeing polyamide fibers, it can achieve 100% exhaustion rate and excellent fastness performance. Enzyme-catalyzed hydrolysis of starch with a ratio of more than 80-100% of tetrasaccharides, 0-20% of trisaccharides, 0-15% of disaccharides, and 0-1.0% of monosaccharides; polysaccharides are formed by 1, 4, 1, 6 glycosidic bonds between monosaccharides Example 21~30.
[0042] example
[0043] 22
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