• Title/Summary/Keyword: BTCA(Butanetetracarboxylic acid)

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Dyeability of Cotton Fabric Treated with Chitosan, 1,2,3,4-Butanetetracarboxylic Acid, and Citric Acid (키토산 처리와 1,2,3,4-Butanetetracarboxylic Acid, Citric Acid로 가교된 면직물의 염색성)

  • Kim, Kyung-Sun;Kim, So-Jin;Jeon, Dong-Won
    • Journal of Fashion Business
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    • v.13 no.1
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    • pp.115-124
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    • 2009
  • Chitosan and CA/BTCA were employed in order to induce crosslinking in the fiber for the improvement of wrinkle recovery of the cotton fabrics and the endowment of anti-microbial functions to the fabric. The treated fabrics were dyed by using reactive dyestuff and their dyeing behaviors were investigated. As a result, the fabric treated with chitosan only exhibited more dye-uptake amount than the untreated fabric, and the treated and untreated fabrics together showed excellent light-fastness and wash-fastness. In the cases that CA or BTCA was added to the chitosan, the CA-treated showed better dye-uptake and dyeing properties as light-fastness than the BTCA-treated. In conclusion, it is possible to maintain the dye-uptake level at reduced treatment cost when the CA is employed as a substitute cross-linking agent for BTCA.

Physical Properties and Virtual Cloth Images of Cotton Fabrics Treated with Chitosan, 1,2,3,4-Butanetetracarboxylic Acid and Citric Acid (키토산과 1,2,3,4-Butanetetracarboxylic Acid, Citric Acid로 가공된 면직물의 역학적 특성과 가상 봉제 이미지)

  • Kim, Kyung-Sun;Jeon, Dong-Won;Kim, Jong-Jun
    • Journal of Fashion Business
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    • v.13 no.1
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    • pp.102-114
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    • 2009
  • Chitosan is a polysaccharide with cationic amino groups in its structure and has useful properties as functional materials. Various end-use developments of chitosan are in progress. When the cotton fabric is pretreated with chitosan, the hand property of cotton fabric may be improved expecially for the summer apparel. In this study, as a cross-linking agent to introduce chitosan into cotton, BTCA(butane-1,2,3,4-tetracarboxylic acid) or CA(citric acid) was added in order to prevent detachment of chitosan by the cross-linking. During the cross-linking procedure, via the padding-drying-heat setting, amino groups of chitosan and hydroxyl groups of cotton, carboxyl groups of BTCA/CA are cross-linked by forming anhydrous cyclic rings. Since BTCA has four carboxyl groups, cross-linking by thermal treatment is easy, leading to the trials in wrinkle-recovery treatment of cotton fabrics. However, the high price of the BTCA reagent has been a shortcoming in the actual application for industrial use. Therefore, in this study, we tried the application of CA having three carboxyl groups, which is relatively low priced, as the substituting cross-linking agent. The hand of the treated fabrics were evaluated by measuring physical properties. In addition, based on the physical properties, three-dimensional images were introduced by using 3D CAD systems and results were compared.

Durable Press Finishing of Silk/Cotton Fabrics with BTCA ( I ) - Effect of Treating Conditions on Physical Properties - (BTCA에 의한 실크/면 교직물의 DP 가공 (I) - 물리적 특성에 미치는 처리 조건의 영향 -)

  • 이문철;조석현
    • Textile Coloration and Finishing
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    • v.14 no.1
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    • pp.43-50
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    • 2002
  • Silk/Cotton fabrics were treated with butanetetracarboxylic acid(BTCA) to improve crease recovery and anti-shrinking properties at various curing temperatures and pH values. We investigated the effects of finishing conditions on add-on of BTCA, bending property(E, 2HB), wrinkle recovery angle, shrinkage, and dyeing properties. The Add-on of BTCA increased with increasing curing temperature and concentration. Crease recovery was improved with decreasing shrinkage. Maximum add-on of BTCA was showed at pH 2.5. In case of dyeing and mercerization, silk side treated with BTCA was more flexible than untreated, whereas cotton side was more stiff. In dyeing after mercerization, B and 2HB values were higher and K/S values were doubled nearly. The hand of fabric improved with decreasing B and 2HB by the BTCA treatment. BTCA treatment after reactive dyeing improved crease recovery, and caused no change of color difference. However, BTCA treatment after reactive dyeing didn't improve crease recovery, whereas B and 2HB were decreased considerably by the treatment.

Durable Press Finishing of Silk/Cotton Fabrics with BTCA(2) - The Evaluation of Physical Properties of Silk/Cotton Fabrics Treated with BTCA by HPLC Analysis - (BTCA에 의한 실크/면 교직물의 DP 가공(2) - HPLC에 의한 BTCA 처리 실크/면 교직물의 물리적 특성 평가 -)

  • 조석현;이문철
    • Textile Coloration and Finishing
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    • v.14 no.3
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    • pp.19-25
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    • 2002
  • Silk/cotton fabrics were treated with butanetetracarboxylic acid(BTCA) under various treating conditions such as concentration, treated time and curing temperatures. Bending property, tensile strength, wrinkle recovery angle, and shrinkage were measured. The BTCA concentration in the saponfication mixture was measured by an isocratic HPLC equipped with the strong cationic exchange column Aminex HPX-87-H and a UV detector. The detected concentration of BTCA was shown in silk side much more than that of cotton side. The bending and shrinkage properties were improved at minimum curing condition and the lower concentration of BTCA. Tensile strength decreased with increasing concentration of BTCA, curing temperature and treated time, while wrinkle recovery angle increased.

A Study on the Micropores of BTCA Finished Cotton Fabrics (BTCA로 방추가공된 면직물의 미세기공구조 측정)

  • 최연주;유효선
    • Journal of the Korean Society of Clothing and Textiles
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    • v.26 no.7
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    • pp.1078-1084
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    • 2002
  • Cotton fabrics were treated with 1,2,3,4-butanetetracarboxylic acid(BTCA) to impart durable press performance, which is formaldehyde-free DP finishing reagent. The pore structures of BTCA treated cottons were compared using a reverse gel permeation chromatographic technique(reverse GPC). A series consisting 4 kinds of water soluble sugars was used to study the elution characteristics of columns prepared from cotton fibers. From these data, differences in pore size distribution in the control and BTCA treated cottons were distinguished. BTCA crosslinks cellulose molecules provided wrinkle resistance to the treated cotton fabrics through ester linkages. Although crosslinking of cotton with BTCA reduced accessible internal volume across the entire range of pore size, differences in line pores were larger than in small pores. BTCA treated cotton exhibited reductions over 40% in large pore sizes.

Effect of the changes in Micropore Structure on the Dyeability of BTCA Finished Cotton Fibers (BTCA로 방추가공된 면섬유의 기공구조 변화가 염색성에 미치는 영향)

  • 최연주;유효선
    • Journal of the Korean Society of Clothing and Textiles
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    • v.27 no.11
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    • pp.1300-1306
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    • 2003
  • Cotton fibers were treated, with 1, 2, 3, 4-butanetetracarboxylic acid (BTCA) which is formaldehyde-free reagent to impart durable press performance. The dyeability, dyeing rate, and diffusion coefficient, of BTCA treated cottons were compared to prove the changes of pore size structure using direct dyes and disperse dyes. Diffusion coefficients of BTCA treated cotton fibers were determined at acidic conditions to figure out the effect of swelling. Since the dyeability of BTCA treated cotton fibers dyed with direct dyes were reduced, it is considered that the dyeability to direct dyes is related to the quantity of residual large pores. But, the dyeability to disperse dyes were increased due to the less reduction of small pore sizes and the increase of hydrophobicity in BTCA treated cotton cellulose. The dyeability to direct dye and disperse dye were decreased more at acidic conditions than at neutral conditions. It seemed that the swelling of pores in the fiber were inhibited.

The Wrinkle Resistance and DP Rating of Tencel Treated with BTCA (BTCA를 이용한 텐셀의 방추성 및 DP성)

  • 양인영;송화순
    • Journal of the Korean Society of Clothing and Textiles
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    • v.28 no.910
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    • pp.1265-1272
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    • 2004
  • The purpose of this study is to develope wrinkle recovery property, DP rating of Tencel by using BTCA(1,2,3,4-butanetetracarboxylic acid) and MgCl$_2$ that does not make water pollution. The adoptable condition to improve the wrinkle resistance and DP rating was determined 10% BTCA(o.w.f), 3% catalyst(o.w.f), 0.5% softener(o.w.f), 5min padding time, 150$^{\circ}C$ curing temperature, 2min curing time and pH 2.7. It was proven that ester groups were formed and cross-links increased by treating Tencel with BTCA. By XPS diffraction, Tencel treatment using BTCA was proved not to affect crystal formation.

Shrinkproof Finish of Viscose Rayon Fabric (비스코스 레이온 직물의 방축가공)

  • 김성동;이인열;이종렬;김민정
    • Textile Coloration and Finishing
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    • v.10 no.6
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    • pp.20-26
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    • 1998
  • 100% viscose rayon fabric was treated with 1,2,3,4-butanetetracarboxylic acid (BTCA) by pad-dry-cure process in the presence of various catalysts. The dimensional stability, mechanical properties and hand values of fabric treated with BTCA were investigated. The ester-crosslinking reaction was influenced by the concentration of BTCA and type of catalyst. The fabric treated with BTCA was comparable or superior to that treated with conventional crosslinking agents such as dimethyloldihydroxyethyleneurea and 4,5-dihydroxy-1,3-dimethyl-2-imidazolidinone in respect of wrinkle recovery, shrinkproof property, retention of strength, and hand values. But in yellowing of fabric, the fabric treated with BTCA was inferior to that treated with conventional crosslinking agents. The fabric treated with BTCA/sodium formate was inferior to that treated with BTCA/sodium hypophosphite in respect of WRA, but had better strength retention and whiteness.

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Crosslinking of PVA Films with BTCA (BTCA를 이용한 PVA 필름의 가교에 대한 연구)

  • Yun, Seong-Jong;Heo, Yong-Chan;Jang, Jin-Ho
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2008.04a
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    • pp.135-137
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    • 2008
  • PVA films with 1,2,3,4-Butanetetracarboxylic acid(BTCA) and sodium hypophosphite monohydrate(SHM) were crosslinked via thermal curing. Different parameters affecting on the crosslinking were investigated including BTCA and SHM concentration, curing temperature and time. The cured films was extracted with boiling water and gel fraction was calculated from weight change of the PVA films. Moisture regain of the gelled films was also measured. While the gel fraction of PVA films increased with increasing curing temperature and time, moisture regain decreased. Water resistance of the crosslinked PVA films improved by the BTCA crosslinking treatment.

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Preparation of Superabsorbent PVA Films with Polycarboxylic Acid Crosslinkers (폴리카르복시산 가교제를 이용한 고흡수성 PVA 필름의 제조)

  • Koo, Gwang-Hoe;Yoon, Sung-Jong;Jang, Jin-Ho
    • Textile Coloration and Finishing
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    • v.21 no.4
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    • pp.39-45
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    • 2009
  • PVA films were crosslinked with dimethylol dihydroxy ethylene urea (DMDHEU) and three polycarboxylic acids of butanetetracarboxylic acid (BTCA), citric acid and malic acid Different factors influencing the crosslinking treatment with BTCA were investigated including BTCA and sodium hypophosphite (SHP) concentration, curing temperature and time. The cured films was extracted with boiling water and gel fraction was calculated based on weight change of the PVA films. The gel fraction of PVA films increased with increasing curing temperature and time. And the resistance to water and thermal stability of the crosslinked PVA films improved with the BTCA crosslinking treatment. While crosslinking with citric acid gave the highest gel fraction among the crosslinkers, crosslinking with malic acid showed the highest absorbancy in 0.9% saline solution, which was attributed to lower crosslink density and high number-average molecular weight between crosslinks. The superabsorbent PVA films could be prepared by adjusting the crosslinking condition of PVA with polycarboxilic acids.