• Title/Summary/Keyword: anthraquinone dye

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Washing Fastness of Polyester Artificial Suede Fabric According to Reduction Clearing Method (환원세정방법에 따른 스웨드 직물의 세탁견뢰도)

  • 강연희;백진주;서말용;김삼수;허만우;이난형
    • Textile Coloration and Finishing
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    • v.13 no.4
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    • pp.234-240
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    • 2001
  • In order to improve the washing fastness of dyed polyester artificial suede fabric, it was dyed by using auto and anthraguinone type disperse dyes and treated with 3 different reduction clearing methods. The reduction clearing methods used in this study were normal alkaline reduction clearing, $N_2$ gas replacement method, and ultrasonic treatment during normal reduction clearing. The results were as followings ; The washing fastness property of dyed polyester artificial suede fabric was slightly improved by reduction clearing with $N_2$ gas replacement or with ultrasonic treatment comparing with normal alkaline reduction clearing. It was found that the use of $N_2$ gas replacement or ultrasonic treatment during reduction clearing eave effective removal of unfixed dyes on the fiber surface. We also obtained that the azo type disperse dye on polyester artificial fabric suede fabric showed higher wash fastness than anthraquinone type disperse dye.

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Printing of Polyester and Cotton Blends using Diaminoanthraquinone Disperse Dye and Monochlorotriazinyl Reactive Dye Mixtures (디아미노안트라퀴논계 분산염료/모노클로로트리진형 반응염료에 의한 폴리에스테르/면 혼방 직물의 날염)

  • 강숙녀
    • Textile Coloration and Finishing
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    • v.6 no.2
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    • pp.30-39
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    • 1994
  • To study the printing behaviors of Polyester and cotton(P/C) fabrics printed with disperse and reactive dyes, the effects of alkalis on the fixation of reactive dyes and the alkali-stability of disperse dyes in various methods of fixation were examined. The anthraquinone disperse dyes which have diamino derivatives as substituents without hydroxy group, such as C.I. Disperse Violet 1(D.V.1), C.I. Disperse Violet 28(D.V.28) and C.I.Disperse Blue 60(D.B.60) showed good results of fixation without regard to the concentration of NaHCO$_3$. In case of high temperature steaming(HTS) and unsaturated steaming(US)/HTS, D.V. 1 was alkali-stable and effective for P/C printing. A good result was obtained with D.V.1 and C.I.Reactive Orange 13(R.O.13) paste of 4% $K_{2}CO_{3}$. It was found that the unfixed D.V.28 bearing chloro group can hinder the fixation of monochlorotriaxinyl reactive dyes, and D.B.60 made little stain on 100% cotton. In thermosol(Tm), the dye uptake of D.V.1 was not decreased so much, but those of D.V.28 and D.B.60 were greatly decreased.

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A Study on Dyeing of Silk-Polyester Fabric (絹과 Polyester合絲絹織物의 染色法改善에 關한 硏究)

  • Nahm, Joong-Hee;Chang, Byong-Ho
    • Journal of Sericultural and Entomological Science
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    • v.23 no.1
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    • pp.56-64
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    • 1981
  • The textile fabric contains the functions of sanitation, decoration, wearing style and washing in the practical use. Among various tetile fiber, silk has less utilities than synthetic fiber in practical use although silk has good benefits of the high quality of silk fabric. Thus no textile fiber, neither natural norsynthetic, has all the functions. In this sense, many compound fabrics have been improved to reveal various functions of fabric However, this has been disturbed with the problem of dyeing, expecially in the case of compound fabric of silk. The work is carried out to improve the dyeing method of compound fabric of polyester and silk. The results obtained are as follows: 1. In the dyeing of compound fabric(P/S fabric), azo dyes was more suitable than anthraquinone dyes. 2. According to the carrier, dyeing spot was appeared by the high concentration in bath. 3. Degree of dye fixation was decreased in dyeing of methylnaptharine carrier(D.N) and anion disperser(T.S). 4. The affinity of dye was suitable in the dyeing bath of azo dye, trichlorobenzene carrier and nonion disperser. 5. Dye fixation of silk side in compound fabric by acid dye showed higher in acid bath of dyeing. 6. In printing of silk and polyester compound fabric, it must be understood relationship among fibers, dyes, and steaming conditions.

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Decolorization of Acid Green 25 by Surface Display of CotA laccase on Bacillus subtilis Spores

  • Park, Jong-Hwa;Kim, Wooil;Lee, Yong-Suk;Kim, June-Hyung
    • Journal of Microbiology and Biotechnology
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    • v.29 no.9
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    • pp.1383-1390
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    • 2019
  • In this study, we expressed cotA laccase from Bacillus subtilis on the surface of B. subtilis spores for efficient decolorization of synthetic dyes. The cotE, cotG, and cotY genes were used as anchoring motifs for efficient spore surface display of cotA laccase. Moreover, a $His_6$ tag was inserted at the C-terminal end of cotA for the immunological detection of the expressed fusion protein. Appropriate expression of the CotE-CotA (74 kDa), CotG-CotA (76 kDa), and CotY-CotA (73 kDa) fusion proteins was confirmed by western blot. We verified the surface expression of each fusion protein on B. subtilis spore by flow cytometry. The decoloration rates of Acid Green 25 (anthraquinone dye) for the recombinant DB104 (pSDJH-EA), DB104 (pSDJH-GA), DB104 (pSDJH-YA), and the control DB104 spores were 48.75%, 16.12%, 21.10%, and 9.96%, respectively. DB104 (pSDJH-EA) showed the highest decolorization of Acid Green 25 and was subsequently tested on other synthetic dyes with different structures. The decolorization rates of the DB104 (pSDJH-EA) spore for Acid Red 18 (azo dye) and indigo carmine (indigo dye) were 18.58% and 43.20%, respectively. The optimum temperature for the decolorization of Acid Green 25 by the DB104 (pSDJH-EA) spore was found to be $50^{\circ}C$. Upon treatment with known laccase inhibitors, including EDTA, SDS, and $NaN_3$, the decolorization rate of Acid Green 25 by the DB104 (pSDJH-EA) spore decreased by 23%, 80%, and 36%, respectively.

Decolorization of synthetic dyes by Rhodopseudomonas palustris P4

  • Oh, You-Kwan;Kim, Yeon-Hee;Park, Sung-Hoon
    • 한국생물공학회:학술대회논문집
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    • 2003.04a
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    • pp.403-408
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    • 2003
  • A newly isolated Rhodopseudomonas palustris P4 could decolorize various synthetic dyes containing different chromogenic groups such as azo linkage (Crocein Orange G, New Coccine, Chromotrope FB, Congo Red, Remazol Black B), anthraquinone Reactive blue 2, or indigo Indigo Carmine. Among them, the degradation rate of Black B was studied in detial. Degradation of Black B followed the Arrhenius equation in 25 - $40^{\circ}C$ with an activation energy of 7.79 kcal/mol. Optimum pH was 8. Glucose in the range of 5 - 50g/l did not affect the Black B decolorization. When Black B increased from 25 mg/l to 2000 mg/l, decolorization activity increased almost linearly but the extent of decolorization was constant at about 86% irrespective of dye concentration. Analyses by HPLC revealed that the Black B molecules were partially degraded and some chromogenic intermediates were produced. These results indicate that Rps. palustris P4 has an outstanding capability to degrade various dyes.

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Carrier Dyeing of Polyester Fabrics in Alkaline Dyebath (폴리에스테르직물의 알칼리욕에서의 Carrier염색)

  • 조은자;남성우;김인회
    • Textile Coloration and Finishing
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    • v.13 no.6
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    • pp.381-390
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    • 2001
  • The optimum carrier concentrations were obtained by the maxmium exhaustion ratios of polyester fabrics at 8$0^{\circ}C$ . The optimum concentrations of methylsalicylate, acetophenone, anisole, propiophenone, 2-ethyl hexyl alcohol, ethylene glycol and propylene glycol were $3g/\ell,\;12g/\ell,\;7g/\ell,\;5g/\ell,\;3g/\ell,\;35g/\ell,\;and\;40g/\ell$, respectively Azo, anthraquinone, and quinoline disperse dyes were quite stable up to PH 10.3, but nitro disperse dye were severely hydrolyzed in alkaline dyeing. The tensile strength decreased with increasing dyebath pH because the polyester fabrics were easily decomposed by alkali. The reduction cleaning could be canceled in alkaline dyeing because the carriers were solved by alkali during dyeing.

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Carrier Dyeing of Polyester Fabrics in Alkaline Dyebath (폴리에스테르직물의 알칼리욕에서의 Carrier염색)

  • Jo, Eun Ja;Nam, Seong U;Kim, In Hoe
    • Textile Coloration and Finishing
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    • v.13 no.6
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    • pp.23-23
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    • 2001
  • The optimum carrier concentrations were obtained by the maxmium exhaustion ratios of polyester fabrics at 80℃. The optimum concentrations of methylsalicylate, acetophenone, anisole, propiophenone, 2-ethyl hexyl alcohol, ethylene glycol and propylene glycol were 3g/ℓ, 12g/ℓ, 7g/ℓ, 5g/ℓ, 3g/ℓ, 35g/ℓ, and 40g/ℓ, respectively. Azo, anthraquinone, and quinoline disperse dyes were quite stable up to pH 10.3, but nitro disperse dye were severely hydrolyzed in alkaline dyeing. The tensile strength decreased with increasing dyebath pH because the polyester fabrics were easily decomposed by alkali. The reduction cleaning could be canceled in alkaline dyeing because the carriers were solved by alkali during dyeing.

Coloration of Pure Polypropylene Fiber with Super Hydrophobic Dyes; Application of Anthraquinone Derivatives with linear Alkyl Substituents

  • Kim, Tae-Kyeong;Yoon, Seok-Han;Hong, Jin-Pyo;Kim, Hong-Je;Bae, Jin-Seok
    • Textile Coloration and Finishing
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    • v.18 no.5 s.90
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    • pp.30-34
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    • 2006
  • Polypropylene fiber was dyed with 4 super hydrophobic dyes having different alkyl derivatives on the same chromophore. Double-tailed cationic surfactant, didodecyldimethylammonium bromide(DDAB), was used to make dye-dispersant complex to improve the dispersion of dyes. As the alkyl groups are longer and the hydrophobicity is increased, the dyeability onto polypropylene fiber was improved and deep coloration was obtained. As for the fastness properties, wash fastness was relatively good, while light fastness was bit low.

Studies on the Transfer Printing of Cotton Fabrics (면직물의 건식전사날염에 관한 연구)

  • Hwang, Jong-Ho;Lee, Seok-Young;Cho, Hwan
    • Textile Coloration and Finishing
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    • v.7 no.3
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    • pp.31-37
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    • 1995
  • Effects of glycol pretreatment conditions such as concentration and molecular weight of glycols and dye types of different constitutions on the degree of transfer were investigated when transfer printed onto the cotton fabric with disperse dyestuffs. Obtained results are as follows ; 1. Although the degree of transfer increases linearly with temperature a time, above a certain critical point, they show decremental aspects for both of C.I. Disperse Orange 3 and C.I. Diperse Violet 1. 2. Degree of transfer increases with molecular weight of glycols, but PEG 200 which has a moleular weight 200 and boiling point of 300$^{\circ}C$ is more effcient than that of lower molecular weight. 3. Degree of tansfer for the C.I. Disperse Orange 3 having constitution of azo benzene type is somewhat higher than that of C.I. Disperse Violet 1 of amino anthraquinone.

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Relation between molecular structure and order parameter of liquid crystals and dyes in GH-LCD (GH형 LCD에 있어서 액정 및 2색성 색소의 분자형상과 배향질서도와의 관계)

  • 박우상
    • Electrical & Electronic Materials
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    • v.10 no.10
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    • pp.989-994
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    • 1997
  • In a Guest-Host cell the orientational ordering of dyes doped into liquid crystals has been investigated. To evaluate the influence of the host liquid crystals on the ordering of the dyes we have measured precisely the ordering parameters of the liquid crystals by using the dichroic ratio of the absorbances for infrared light polarized parallel and perpendicular to the diector. Our experimental results show that the ordering of the dyes can be expressed as a function of not only the molecular structure of the dyes but also the order parameter of the liquid crystals. These functions are dependent on the kinds of the liquid crystals and the dyes. Particularly the combination such as anthraquinone dyes doped into cyanobiphenyl liquid crystals show a very high ordering parameter. This is considered due to a strong intermolecular interaction between the dipoles of both liquid crystals and dyes.

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