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Effect of Metal Ion Content in Dyebath on the Color of Wool Dyes

机译:金属离子含量在染料中对羊毛染料颜色的影响

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The effect of metal ions in dyebath on the color of wool fabrics dyed with six kinds of common wool dyes was investigated. The dyes chosen were acid mordant dyes, Palatin dyes, Acidol dyes, Polar dyes, Lanasol dyes, and Lanaset dyes. The dyes were divided into 23, and fabrics were treated separately with these dyes according to the corresponding dyeing process. The metal ion of Cr~(6+), Cr~(3+), Cu~(2+), Fe~(3+), and Al~(3+) was added separately into the dyebath, the content of which was 3 mg/L, 30 mg/L, and 300 mg/L. The differences in color between the fabrics dyed using the metal-contain-process and the metal-free-process were compared. The color difference is positively correlated with the metal ion content. When the metal ion content was 3 mg/L, the color difference values (△E) of most dyed fabrics were less than 1.7±0.3 of CIELAB. Moreover, color fastness was greater than 4, which means that the effect of the metal ions to color difference is acceptable. When the metal ion content was 300 mg/L, the △E values of most dyes were greater than 13.6±1.0 of CIELAB, which means that the metal ions have obvious effects on color difference. When the metal ion content was 30 mg/L, the △E values ranged from 1.7±0.3-13.6±1.0 of CIELAB. Based on the recommendation of the GB250-1995 Gray Scale for Assessing Change in Color (equivalent to the ISO 105/A02-1993 Textile-tests for Color Fastness-grey Scale for Assessing Change in Color), the △E value 1.7±0.3 of CIELAB and Grade 4 color fastness were used as the threshold to assess the results. When the metal ion content was 3 mg/L, Cu~(2+) and Fe~(3+) had low influence on the Palatin dyes, in which the color difference and the color fastness were less than the threshold. Meanwhile, Cu~(2+) and Fe~(3+) had excessive effects on the other kinds of dyes, with the △E values beyond the threshold. However, Cr~(3+) had excessive influence on the Palatin dyes, with the color difference and the color fastness exceeding the threshold. In contrast, Cr~(3+) had a smaller effect on the other kinds of dyes, with the △E values conforming to the threshold. Al~(3+) had a significant effect on the acid mordant dyes, with the △E values beyond the threshold. In contrast, Al~(3+) had a smaller effect on the other kinds of dyes, which were within the threshold. Cr~(6+) had no significant effect on the kinds of dyes, in which the △E values did not exceed the threshold. When the metal ion content was 30 mg/L or 300 mg/L, we obtained mixed results. The color difference and color fastness values of kinds of dyes in the present study met the threshold, whereas some kinds of dyes were not within the threshold. The result has practical utility for setting the standards for water recycling in the wool dyeing industry.
机译:研究了金属离子在染料织物上用6种常见羊毛染料染色的棉织物颜色的影响。选择的染料是酸伪染料,Palatin染料,酸性染料,极性染料,Lanasol染料和Lanaset染料。将染料分成23,并根据相应的染色方法将织物分别用这些染料处理。将Cr〜(6+),Cr〜(3+),Cu〜(2+),Fe〜(3+)和Al〜(3+)分别分别进入Dyebath的金属离子,其含量3毫克/升,30毫克/升,300毫克/升。比较了使用金属含量染色的织物之间的颜色差异和无金属过程。色差与金属离子含量呈正相关。当金属离子含量为3mg / L时,大多数染色织物的色差值(△e)小于Cielab的1.7±0.3。此外,色牢度大于4,这意味着金属离子对色差的影响是可接受的。当金属离子含量为300mg / L时,大多数染料的△E值大于Cielab的13.6±1.0,这意味着金属离子对色差具有明显的影响。当金属离子含量为30mg / L时,△e值范围为1.7±0.3-13.6±1.0的Cielab。基于GB250-1995灰度评估颜色变化的建议(相当于ISO 105 / A02-1993用于评估颜色变化的颜色牢度 - 灰度尺度的纺织品测试),△e值1.7±0.3使用Cielab和4级色牢度作为评估结果的阈值。当金属离子含量为3mg / L时,Cu〜(2+)和Fe〜(3+)对帕拉丁染料影响低,其中色差和色牢度小于阈值。同时,Cu〜(2+)和Fe〜(3+)对其他种类的染料具有过多的影响,具有超出阈值的△e值。然而,Cr〜(3+)对Palatin染料的影响过多,色差和颜色牢度超过阈值。相比之下,Cr〜(3+)对其他类型的染料效果较小,△e值符合阈值。 Al〜(3+)对酸媒介染料有显着影响,其中△e值超出阈值。相反,Al〜(3+)对其他种类的染料效果较小,这在阈值内。 Cr〜(6+)对染料种类没有显着影响,其中△e值没有超过阈值。当金属离子含量为30mg / L或300mg / L时,我们获得了混合结果。本研究中染料种类的色差和颜色牢度值达到阈值,而某些类型的染料不在阈值范围内。结果具有实用的效用,用于设定羊毛染色工业中的水循环标准。

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