• Title/Summary/Keyword: Indigo Dyeing

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Dyeing Properties of Askin Fabric with Indigo (인디고를 이용한 아스킨 섬유의 염착특성)

  • Kim, Su-Ho;Kim, Young-Sung;Hong, Jin-Pyo;Yoon, Seok-Han;Son, Young-A
    • Textile Coloration and Finishing
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    • v.21 no.2
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    • pp.1-6
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    • 2009
  • Recently, polyester is widely used in textile fabrics due to its application potentials in various fields. It is known that askin fabric is prepared with mainly polyester and is enjoyed with various end uses such as marine clothing, underwear, shirts, swimming suits and so on. For this purpose, color fastness should be considered with great importance during its wet processing step. In this context, vat dyes were very much attracted due to the advantage of superior fastness property. Thus, we have used indigo dye towards askin fabric dyeings and investigated corresponding properties namely, dyeing temperature, concentration of dye, reducing agent amount and alkali amount. The results showed that higher color strengths of indigo dyeing on askin fabric were obtained at $110^{\circ}C$, 8% o.w.f, 3g/l, 5g/l, respectively. The color fastness to washing was considerable generally.

A Study on the Physiological Effects and Dyeing Properties of the Extract of Fermented Indigo(Part II) (발효쪽 추출물의 생리적 기능과 염색특성(제2보))

  • 한신영;최석철
    • Journal of the Korean Society of Clothing and Textiles
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    • v.24 no.8
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    • pp.1146-1154
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    • 2000
  • The purpose of this study was to investigate the antimicrobial activity, antimutagenic and anticancer effects and dyeing properties of the fermented indigo extract. The methanol extract of fermented indigo showed a strong inhibition effect on Trich. mentagrophytes and antimutagenic activities against aflatoxin B$_1$(AFB$_1$) in the Ames test using Salmonella typhimurium TA 100. We also found in vitro anticancer effects of the methanol extract of fermented indigo and it was evaluated by using Clone M-3 mouse melanoma cells and A431 human epidermoid carcinoma cells and exerted little cytotoxity against 3T3-L1 embryo fibroblast cell. In the relationship between the K/S values of cotton and silk fabrics dyed with fermented indigo and dyeing repeating times, the K/S values became higher as the repeating times were increased. The K/S values were high when the fabrics were dyed at low temperture. The K/S values of cotton fabrics were higher than those of silk fabrics. Changes of surface color of silk fabrics were higher than those of cotton fabrics after water fastness test, laundering, irradiation and treatment of acidic and alkaline perspiration.

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Dyeing Behavior of Silk Dyed with Indigo Leaf Powder Using Reduction and Nonreduction Dyeing and Its Relationship with the Amount of Indigotin and Indirubin Adsorbed in Silk

  • Yoo, Wansong;Ahn, Cheunsoon
    • Journal of the Korean Society of Clothing and Textiles
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    • v.43 no.5
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    • pp.753-767
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    • 2019
  • Dyeing behavior of indigo leaf powder was examined in regards to the effect of the amount of pigments on color and dye adsorption for silk dyed by reduction and nonreduction dyeing. The amount of indigotin and indirubin pigments adsorbed in dyed silk was examined by HPLC-DAD analysis. The color of dyed silk showed 7.7BG - 2.7B hue when silk was dyed at $50^{\circ}C$, and 3.5G - 4.9BG when dyed at $70^{\circ}C$. Blue ($b^*$) and green ($a^*$) color decreased as the pH of dyebath increased. When silk was dyed using nonreduction, R (red) and RP (red purple) hue and R hue was more apparent in samples dyed at $90^{\circ}C$. In reduction dyeing, amount of indigotin detected from silk exceeded the amount that was initially contained in the input dye. The amount of indirubin was lower than indirubin that was initially in the powder. In nonreduction dyeing, silk showed a higher amount of indirubin adsorption compared to silk dyed by reduction. The amount of indigotin adsorbed in silk was lower than the amount initially contained in the input dye. The amount of indigotin and indirubin adsorption was primarily dependent upon the dyeing method-reduction or nonreduction along with dyeing temperature and the pH of dyebath.

A Study on the Property of Hair Dyed with Fermented Indigo (천연염료 발효(天然染料 醱酵) 쪽으로 염색(染色)한 모발(毛髮)의 특성 연구(特性 硏究))

  • Kim, Kyung-Sun;Lee, In-Sook;Jeon, Dong-Won;Ha, Byung-Jo
    • Journal of Fashion Business
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    • v.10 no.1
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    • pp.120-131
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    • 2006
  • Recently, it has been reported that chemical hair coloring can cause allergic reactions, the toxicity issue of chemical hair color was issued. Therefore, there is an increasing interest in the hair coloration technique using non-toxic and bio-compatible hair color gotten from natural resource. In this study, the possibility using fermented Indigo as natural hair coloring agent was investigated. Bleached hair samples were dyed using Indigo, and the effect of dyeing frequency, the physical change after dyeing, color, surface and cross-section characteristics, and tensile property were also studied. In addition, the protection property of cationic detergent finishing on damaged hair samples were also studied. The following conclusions are made; 1. While bleached hair samples with low value showed the negligible effect of repeated dyeing, bleached hair samples with high value showed the good effect of repeated dyeing. 2. Hair sample dyed with Indigo showed a high light-fastness, however, tensile strength and elongation showed very low values (high damage on hair sample). 3. Cationic detergent finishing did not affect on the colorfastness because of decoloration after dyeing, however, it increased the smoothness of hair sample, and therefore, can use as protectant of damaged hair. 4. Hair scale was damaged after dyeing. It seemed that the alkali, potassium carbonate, increased pH of dyeing bath to 11, as a result, the hair was swollen, weaken, and dissolved on the prolonged dyeing time. Dyed hair sample became stiff and fine. 5. The color difference was 4.62 (a high fastness value) in the test of sunlight exposure, shampoo, cationic detergent finishing, and acid perspiration fastness.

Optimization of Silk Dyeing with Natural Indigo (천연인디고를 이용한 견직물 염색의 표준화 연구)

  • Son, Gyeong-Hui;Sin, Yun-Suk;Ryu, Dong-Il
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2008.04a
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    • pp.102-104
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    • 2008
  • Natural indigo dye was prepared by extracting from Polygonum tintorium, precipitating with calcium hydroxide, and dried. Dyeing was carried out using sodium hydrosulfite as a reducing agent for the prepared natural indigo powder. K/S value, color property, and colorfastness of dyed fabrics were investigated. Optimum dyeing conditions obtained were 60$^{\circ}C$, 20min. Regardless of indigo dye and sodium hydrosulfite concentration, Munsell hue of dyed fabrics was PB color. Compared to the dyed fabric with both sodium hydroxide and sodium hydrosulfite, those with sodium hydrosulfite only showed higher color strength(K/S value). Colorfastness of dyed fabrics showed high rating except of wash/dry cleaning fastness of silk fabrics dyed low color strength.

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Natural Indigo Dyeing of Hanji Fabric using Baker's Yeast: Effect of Yeast Concentration and Repeat Dyeing (효모를 사용한 한지직물의 천연인디고 염색 : 효모농도와 반복염색 효과)

  • Son, Kyunghee;Shin, Younsook;Yoo, Dong Il
    • Textile Coloration and Finishing
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    • v.33 no.4
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    • pp.191-201
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    • 2021
  • In this study, an eco-friendly indigo reduction system(scale up reduction, use of buffer solution, and pH control) using baker's yeast(Saccharomyces cerevisiae) was applied for natural indigo(Polygonum tinctorium) dyeing of Hanji fabric and Hanji-mixture fabric(Hanji/Cotton, Hanji/Silk). The effect of concentration of baker's yeast, repeat dyeing, and bath reuse was investigated in terms of dye uptake indicating reduction power. And the oxidation-reduction potential(ORP) was monitored. We also evaluated color properties and colorfastness according to the color strength. The yeast concentration did not significantly affect the maximum reduction power. However, the highest yeast concentration was effective in improving the initial dye uptake, and its the reduction retention power was the most excellent. Even on the last reduction day, the effect of increasing the dye uptake by repeat dyeing was observed. And it was confirmed that the reduction bath could be reused for up to 30 days by supplementing yeast at the end of reduction. For all the fabrics used, deeper and darker PB color were obtained by repeat dyeing. As dyeing was repeated, purplish tint got stronger on the Hanji/Silk fabric compared to other fabrics. Regardless of the composition of Hanji fabrics and color strength, washing and dry cleaning fastness were relatively good with above rating 4-5, and fastness to rubbing and light were acceptable with a rating 3-4 ~ 4-5. The eco-friendly natural indigo dyeing process using niram and baker's yeast would offer global marketability and diversity of Hanji product as a sustainable high value-added material.

The Effect of Sodium dithionite in Dyeing with Indigo Pulverata Levis (청대 염색에서 sodium dithionite의 영향)

  • Cho, Kyung-Rae
    • Textile Coloration and Finishing
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    • v.27 no.2
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    • pp.155-163
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    • 2015
  • In dyeing cotton fabric with the Indigo Pulverata Levis, this research examined the effect of the sodium dithionite($Na_2S_2O_4$). For the separation of the Indigo-calcium hydroxide complex in the alkaline solution of the Indigo Pulverata Levis, the reduction with the $Na_2S_2O_4$ at $25^{\circ}C$ was more effective than the solution boiling. The concentration of Indigo in the cotton fabric increased with the increase of Indigo Pulverata Levis, but the concentration of indirubin did not increase particularly. The optimum temperature for the reduction was $60^{\circ}C$, and K/S value of dyed fabric decreased at over $60^{\circ}C$. The concentration of indigo and indirubin in the cotton fabric decreased as $Na_2S_2O_4$ concentration increased. In treating cotton fabric dyed with the Indigo Pulverata Levis by the $Na_2S_2O_4$, the concentration of indirubin decreased and the surface color of dyed cotton changed from purple blue to blue while the treatment temperature was getting higher.

Effect of the Amount of Pigment on the Color of Silk Dyed with Fermented Indigo Powder Dye (발효쪽 분말염료로 염색한 견직물의 색소 함량이 직물의 색상에 미치는 영향)

  • Yoo, Wansong;Ahn, Cheunsoon
    • Journal of the Korean Society of Clothing and Textiles
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    • v.42 no.2
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    • pp.342-359
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    • 2018
  • This research investigated the relationship between the amount of fixed pigment and the color of silk dyed with three types of fermented indigo powder dye under different temperatures and pH, by reduction or nonreduction method. Amount of fixed pigment was analyzed using the Ultimate 3000 HPLC-DAD instrument and the color of dyed silk was measured using the X-rite spectrocolorimeter. All silk samples dyed by reduction method showed PB color. The amount of indigotin fixation was dependent on the dyeing temperature and pH regardless of the indigotin composition in the dye. Indirubin was less dependent upon the dyeing condition in the reduction dyeing and its fixation was minimum level. Dyeing conditions which can maximize the indigotin fixation were $50^{\circ}C/pH$ 11 and $70^{\circ}C/pH$ 7 conditions in reduction dyeing. Color of silk showed more redness ($a^*$) thus higher PB color when the indigotin fixation was low and indirubin fixation was relatively high. Indirubin fixation was very low with slightly better fixation by nonreduction method. More reddish color was obtained by nonreduction dyeing, and by more alkaline dyebath.

Natural Indigo Dyeing of Cotton Fabric - One-step reduction/dyeing process - (면직물에의 천연 인디고 염색 - 일단계 환원/염색 공정 -)

  • Shin, Youn-Sook;Cho, A-Rang;Yoo, Dong-Il
    • Textile Coloration and Finishing
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    • v.22 no.2
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    • pp.101-109
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    • 2010
  • The objective of this study is to investigate the characteristics of natural indigo dyeing of cotton fabric. Reduction and dyeing were carried out by one-step process using an infrared dyeing machine at the liquor ratio of 1:100, and subsequently oxidation and washing in water were followed. Dye uptake was increased with the increase of indigo concentration. Over the full range of dyeing tests, the dyeing condition was optimized to $40^{\circ}C$ for 40min. For most of dye concentrations, the cotton fabrics showed mainly PB color. Maximum K/S value was shown at 4g/L of sodium hydrosulfite concentration and the color strength increased with the increase of dye concentration. Value(lightness) decreased with the increase of dye uptake irrespective of mercerization or reduction method, while the mercerized cotton showed two times higher dye uptake than the untreated cotton. Whereas hue of the untreated cotton showed large decrease of P character(5.6~3.5 PB) with the increase of dye uptake, that of the mercerized cotton increased P character(4.7~5.5 PB). Irrespective of mercerization, value and chroma decreased with the increased of dye uptake. In addition, the untreated showed lower chroma than the mercerized cotton. In the case of traditional reduction, hue of the untreated cotton was changed very little with the increase of dye uptake. For hydrosulfite reduction, P character decreased with the increase of dye uptake. The difference of hue value was small with the change of reduction method(hydrosulfite reduction or traditional fermentation). Color character was not influenced by the changed maximum absorption wavelength. Washing fastness showed 4~4/5 shade change rating without any staining. And dry rubbing fastness was good at low color strength. The bacterial reduction ratios of dyed cotton fabric were also increased.

Study on the Development of Practical Application of Indigo Dyes (실용화를 위한 쪽 염료의 관한 연구)

  • Lee, Sang-Phil;Kim, Soon-Hee
    • The Research Journal of the Costume Culture
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    • v.19 no.3
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    • pp.612-621
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    • 2011
  • The process of making or cultivating indigo dyes is very cumbersome and complex. The dye extraction and dyeing methods using general plant dye, moth repellent dye, fast acting natural dye, and other dyes are very different. This research investigates the extraction of indigo dye and liquid dye extraction of polygonum(indigo) plants using calcium oxide water. While extracting indigo dye the concentration of purified indigo dye may be controlled by adjusting the pH level. Due to the various uses of dyes the adjustment of surface color must be considered. In regard to the change according to different concentrations of reducing agents, it was found that cotton fabrics and ramie fabrics show the highest color difference at 0.4% and 0.3% respectively. As the reduction temperature increases, the color difference increases as well. The maximum color difference was found to appear at $90^{\circ}C$. Cotton fabrics and ramie fabrics showed 70.55 and 67.01 respectively. The color difference increases as the concentration of dyes increases, but at a concentration of 300%, cotton fabrics was found to show 6.22PB in H value using the Munsell color system, containing purple and blue color. The pH of the polygonum dyes extracted through this experiment were adjusted by adding calcium oxide to the experimental water, without directly adding calcium oxide to the liquid polygonum extract. In a refine state, it was mixed with polygonum extract to extract a more refine and highly concentrated indigo dye. When lye and reducing agents are added to extracted indigo dye and sealed for long-term storage, it can be effective and easily used for dyeing.