• Title/Summary/Keyword: safflower yellow

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Light Fastness of Silk Fabric dyed with Safflower and Amur Cork Tree extract for Combination dyeing (홍화와 황벽의 혼합염색 견직물의 광퇴색)

  • Jung Sun-young;Jang Jeong-dae
    • Textile Coloration and Finishing
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    • v.16 no.5
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    • pp.8-18
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    • 2004
  • In order to study on the color change of silk dyed with natural colorant due to light fading, and find out the effect of combination dyeing, colorant extracts of safflower red, safflower yellow and amur cork tree were used, either singly or in combination. In combination dyeing, safflower yellow or amur cork tree dyeing process was added on the top of the silk fabric was dyed with safflower red. Color change and light fastness were investigated by $L^*,\; a^*,\; b^*$ H, V/C, and Color difference. Brightness of silk fabric dyed with safflower red and safflower yellow increased gradually with increasing the radiation time of UV light, but amur cork tree was decreased and turned to dull. Color difference of dyed with Amur cork tree showed higher than the others. Combination dyeing of safflower red and amur cork tree provided better light fastness than the one of safflower red and safflower yellow.

A Study on the Properties Changes of Wool Fabrics Dyed with Safflower under Ultraviolet(UV)-Light (홍화 염색 모직물의 자외선에 의한 성능 변화 연구)

  • Shin, Youn-Sook;Choi, Seung-Youn
    • Fashion & Textile Research Journal
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    • v.10 no.2
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    • pp.249-253
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    • 2008
  • The purpose of this study was to investigate the properties changes of wool fabrics dyed with safflower red and yellow colorants under Ultraviolet(UV)-light. For this purpose, the wool fabrics dyed with safflower red and yellow colorants were compared with each other after uv-light exposure in terms of K/S value, color changes(${\Delta}E$), morphology, and strength retention. K/S value rapidly decreased with increasing exposure time, but K/S value of the samples dyed with safflower yellow colorants decreased less than that of the samples dyed with safflower red colorants. In color changes, as increasing exposure time, $L^*$ and $b^*$ increased, $a^*$ decreased, and thereby ${\Delta}E$ increased in the samples dyed with safflower red colorants, $L^*$ increased, $a^*$ and $b^*$ decreased, and so ${\Delta}E$ increased in the samples dyed with safflower yellow colorants, indicating fading away by uv-light and changes of hue, value and chroma value. But the color change of samples dyed with safflower yellow colorants was less than that of samples dyed with safflower red colorants. SEM pictures showed a severe degradation by uv exposure, regardless of colorants type. Tensile strength slowly decreased until 14 days, and rapidly decreased until 21 days and slowly decreased. Strength retention of the samples dyed with safflower yellow colorants was higher than that of the samples dyed with safflower red colorants.

Physiochemical Properties and Dyeability of Safflower Colorants Extracted by Ultrasonic Treatment (초음파로 추출된 홍화색소의 특성 분석과 염색성 평가)

  • Kim, Yong-Sook;Choi, Jong-Myoung
    • Fashion & Textile Research Journal
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    • v.11 no.2
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    • pp.337-343
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    • 2009
  • This study systematically investigated a method for extraction of safflower (Carthamus tinctorius Linnaeus) colorants by ultrasonic treatment. Compared to pigments productivity and cell wall structures of safflower after general and ultrasonic method, the ultrasonic method showed high extraction efficiency of safflower pigments due to destruction of safflower cell wall caused by high vibration energies. Microscopic analysis confirmed the hypothesis that the ultrasonic treatment of safflower caused its cell wall structure loosened and made efficient extraction of safflower pigments. And also, LC-MS/MS analysis revealed that productivities of the yellow and red safflower pigments by ultrasonic method were 21.9% and 14.6% higher, respectively, than those of pigments extracted by general method. The ultrasonic extracted yellow and red colorants could be used to dye not only natural fibers like cotton, silk and wool, but also synthetic fiber like nylon, and generally gave a better color tone than the general extracted colorants from safflower due to the affinities of red and yellow colorant on different fibers. As the yellow and red colorant were extracted by ultrasonic treatment in water, the K/S value on of 550/440nm of cotton and rayon was increased but in the case of silk and wool the change of this value was almost not detected. Finally, this technique might provide a solution to establish reproducibility and standardization for the extraction and dyeing methods on fabrics.

Supercritical Fluid Extraction of Safflower Yellow Pigments from Carthamus tinctorius L. (초임계 이산화탄소를 이용한 홍화로부터 황색소 추출)

  • Han, Byung-Seok;Kim, Kong-Hwan;Chung, In-Sik
    • Applied Biological Chemistry
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    • v.41 no.5
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    • pp.363-366
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    • 1998
  • Supercritical fluid(SCF) carbon dioxide was used to extract safflower yellow pigments from Carthamus tinctorius L. In this work, supercritical fluid extractions were performed at various conditions; pressure (2000, 3000, 4000, 5000 psig), temperature $(40,\;50,\;60,\;70,\;80^{\circ}C)$ and co-solvent $(0,\;3,\;6,\;10,\;14\;wt%\;H_2O)$. Total concentrations of safflower yellow pigments extracted were determined by spectrophotometric method. A maximum yield of yellow pigments was obtained at 4000psig, $60^{\circ}C$ and 10% co-solvent. The extraction yield of pigments was also closely related to moisture content of the raw material. Extraction yield of safflower yellow pigments by SCF extraction at optimized conditions was 6% higher than that by solvent extraction. Supercritical carbon dioxide was proved to be suitable for the extraction of safflower yellow pigments from Carthamus tinctorius L.

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Studies on the Natural Dyes(10) -Dyeing properties of safflower yellow for silk fibers- (天然染料에 관한 硏究(10) -홍화 황색소의 견섬유에 대한 염색성-)

  • Cho, Kyung Rae
    • Textile Coloration and Finishing
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    • v.9 no.5
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    • pp.10-18
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    • 1997
  • In order to study the properties of safflower yellow colors, thermodynamic parameters and dyeing properties on the silk in several dyeing conditions were investigated. The uv-visible spectra of safflower yellow colors in several solvents show hypsochromic shift with the polarity of solvent but bathochromic shift with increasing acidity of solution. The apparent diffusion coefficients and standard affinities of dyeing increased with the increase of dyeing temperature. The standard heat of dyeing(${\Delta}H^0$), entropy change(${\Delta}S^0$) and activation energy($E_{act}$) were calculated to be - 1.144kcal/mol, -7.498(5$0^{\circ}C$)~-3.804(9$0^{\circ}C$)cal/molㆍdeg and 0.123kcal/mol, respectively. The concentration of safflower yellow colors in the silk fiber increased with dyeing temperature, time, concentration of colors and acidity of initial dyebath. Silk fabrics were dyed bright yellow by pre-mordanting with tin chloride. Lightfastness of silk fabrics pre-mordanted by tin chloride was not excellent.

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A Study on the Changes in the Property of Nylon Fabrics Dyed with Safflower Under Ultraviolet-Light(UV) - Focused on the Changes in Color, Strength, and Surface - (홍화 염색 나일론 직물의 자외선에 의한 특성 변화 - 색상, 강도 및 표면 특성 변화를 중심으로 -)

  • Shin, Youn-Sook;Choi, Seung-Youn
    • Journal of the Korean Home Economics Association
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    • v.46 no.9
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    • pp.1-6
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    • 2008
  • The purpose of this study was to investigate the changes in the property of nylon fabrics dyed with safflower red and yellow colorants under Ultraviolet(UV)-light. For this purpose, nylon fabrics dyed with safflower red and yellow colorants were compared with each other after uv-light exposure in terms of K/S value, color changes(${\Delta}E$), morphology, and strength retention. K/S value rapidly decreased with increasing exposure time, but K/S value of the samples dyed with safflower red colorants decreased less than that of samples dyed with safflower yellow colorants. In color changes, as increasing exposure time, $L^*$ increased, $a^*$ decreased, $b^*$ increased, and so ${\Delta}E$ increased in samples dyed with safflower red colorants. In color changes, as increasing exposure time, $L^*$ increased, $a^*$ and $b^*$ decreased, and thereby ${\Delta}E$ increased in the samples dyed with safflower yellow colorants, indicating fading away by uv-light and changes of hue, value and chroma value. But the color change of samples dyed with safflower yellow colorants was less than that of samples dyed with safflower red colorants. SEM pictures showed a severe degradation by uv exposure, regardless of colorants type. Tensile strength slowly decreased until 14 days, and rapidly decreased until 28 days. Strength retention of the samples dyed with safflower yellow colorants was higher than that of the samples dyed with safflower red colorants.

Hair-dyeing by Using Safflower Yellow Colorant (홍화 황색소를 사용한 모발염색)

  • Shin, Youn-Sook;Cho, A-Rang;Yoo, Dong-Il
    • Journal of the Korean Society of Clothing and Textiles
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    • v.33 no.3
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    • pp.391-400
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    • 2009
  • The purpose of this study is to investigate the efficacy of safflower yellow colorant as a natural dye for hair coloring. The dyeing properties of safflower yellow colorant on hair were explored to obtain optimum conditions. Also, the effect of mordant was studied in terms of dye uptake, colorfastness, and hair damage to better understand the characteristics of the colorant. Tensile strength measurement and SEM analysis were carried out for investigating hair damage to light exposure and washing. On the basis of obtained results considering possible hair damage, optimum dyeing conditions were set 100%(o.w.h.) colorant concentration, pH 5, $40^{\circ}C$, and 20min. Dye uptake was improved more effectively by repeated dyeing rather than by increasing concentration. Pre-mordanting method improved dye uptake slightly, irrespective of mordant type. The safflower yellow colorant produced Y colors on hair. Cu and Fe mordants improved washing and light fastness slightly. Better strength retention was obtained with the mordanted-dyed hair than the unmordanted-dyed hair after light irradiation for 40 hours and 10 repeated washing. The hair was more damaged by light exposure than by washing. It was concluded that the safflower yellow colorant can be used as a natural semi-permanent hair dye producing Y color without mordanting.

Comparison Studies between Conventional Hot Water and Cellulase Extraction for Safflower Dyestuff (홍화색소의 일반추출과 셀룰라아제추출의 비교연구)

  • 신인수;홍경옥;오태광
    • Journal of the Korean Home Economics Association
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    • v.39 no.4
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    • pp.49-59
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    • 2001
  • Natural red and yellow dyestuff was extracted from safflower (Carthamus tinctorius Linnaeus) by a new process of cellulase extraction compared with the conventional hot water extraction. Dyestuffs were extracted from safflower easily and repeatedly by means of cellulose as safflower cell wall destroyer. It means that new dyestuff extraction by cellulase improves not only yields of dyestuff from safflower successfully but also the rate of repetition of extraction. From the above experiments, the conclusions of this study were summarized as follows. 1. The optimum conditions of dyestuff extraction from safflower by general extraction method were that the solvent was the water of pH 6.0 on yellow dyestuff and 3% $K_2CO_3$ solution on red dyestuff, extraction temperature was $55^{\circ}C$, and extraction time was 30 min. 2. Among various cellulase, the NOVO cellulase was the best cell wall destroyer of safflower and finally produced the largest amount of dyestuff from safflower by cellulase extraction method. 3. The optimum conditions of dyestuff extraction by cellulase extraction method were conducted on 10 unit of cellulase per gram of safflower at $100m{\ell}$ water of pH 5.0 at $50^{\circ}C$ for 30 min.

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Dyeing of Cotton Fabric with Natural Dye (I) ―Safflower― (천연염료에 의한 면섬유 염색 (I) ―홍 화―)

  • Nam, Sung Woo;Chung, In Mo;Kim, In Hoi
    • Textile Coloration and Finishing
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    • v.7 no.2
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    • pp.47-54
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    • 1995
  • Safflower is natural red dye largely used for dyeing on cotton. It contains yellowish safflower yellow and reddish carthamin, whose constitution is known. Safflower yellow is water-soluble dye and carthamin is solved in alkaline condition. Carthamon obtained by adding acidic solution to a carthamin shows the original hue of safflower. In present study, the dyeing behavior of natural dye known as safflower are examined in an aqueous acidic medium by use of the different dyeing methods such as traditional, modern and purifide-powder method. The relationship between the dye-uptake of cotton fabric investigated by the three methods and the various dyeing conditions is discussed.

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Efficiency of Dyes Extraction and Dyeing of Safflower according to pH Condition (pH에 따른 홍화(紅花)의 색소(色素) 추출(抽出)과 염색(染色)의 효율성(效率性)``)

  • Kim, Kyung-Sun;Jeon, Dong-Won;Oh, Ha-Na;Lee, Hye-Yeon
    • Journal of Fashion Business
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    • v.11 no.2
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    • pp.102-112
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    • 2007
  • Effect of the pH condition was examined on extraction and dyeing of the yellow and red dyes of safflower. Absorption of dye solution extracted from safflower was changed by pH of solvent. In the case of yellow dyes, cotton and ramie weren't dyed regardless of pH of dye bath, but silks were significantly dyed at pH4. Raw silk showed better dyeability than refined silk. In the case of red dyes, cotton and ramie absorbed red dyes selectively, but silks absorbed yellow dyes more significantly than red dyes. Efficiency of extraction and dyeing of yellow dyes in acidic range were find out higher than that in neutral range. Red dyes was effectively extracted at pH11 and dyed at pH6.