• Title/Summary/Keyword: finishing agent

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Effects of Coal Fly Ash as a Bulking Agent under Co-composting with Swine Manure and Saw Dust

  • Lee, Chang Hoon;Park, Seong Jin;Kim, Myung Sook;Yun, Sun Kang;Sonn, Yeon Kyu
    • Korean Journal of Soil Science and Fertilizer
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    • v.47 no.5
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    • pp.356-361
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    • 2014
  • The coal fly ash (CFA) may be utilized as an extender for organic waste composting at the same time fully expected to solve all industrial waste disposal and sawdust tribe. The main objective in this study was to evaluate the effect of CFA addition as a bulking agent for swine manure composting. To determine the suitable addition rate of CFA as a bulking agent, 0, 10, 20 and 30% of saw dust were mixed with 30, 20, 10 and 0% of coal fly ash, respectively. Compost quality for swine manure composting was to evaluate temperature, pH, C/N ratio, and phytotoxicity as germination index. Stability of compost increased with increasing levels of CFA as bulking agent during swine manure composting due to the high alkaline materials including CFA. C to N ratio in treatment added CFA was higher than that of the control without CFA. After finishing composting, germination index of lettuce and cabbage in swine manure compost added 10% of CFA was similar to the control, all the heavy metal contents were far below the stipulated standard for organic farming. These results indicated tahr coal fly ash as bulking agents might be alternative materials to save saw dust and apply industrial products for swine manure composting.

The Adsorption Properties of Heavy Metal Ions on to Cotton Fabrics Treated with Reactive Anionic Agent (반응형 음이온화제 처리 면직물에 대한 중금속 이온의 흡착특성)

  • Kim Mi-Kyung;Yoon Seok-Han;Kim Tae-Kyeong;Lim Yong-Jin
    • Textile Coloration and Finishing
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    • v.17 no.1
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    • pp.20-29
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    • 2005
  • Cotton fabric was treated with a reactive anionic agent in order to have anionic sites(-S03-) on it, which made it possible for the fabric to adsorb various cationic materials. In this study, the adsorptivity of various heavy metal ions such as Pb(II), Cd(II), Cr(III), Co(II), Cu(II), Ni (II) and Cr(VI) on the cotton fabrics treated with anionic agent was examined at the various conditions; concentrations of heavy metal ions, pHs of solution, reaction time and temperature. As a result, the adsorptivity of the heavy metal ions on the cotton fabrics treated with the anionic agent was highly increased comparing to that of untreated cotton fabrics. The order of the adsorptivity was as follows: $Pb(II)>Cd(II)>Cu(II)\geqNi(II)\geqCo(II)>Cr(III)\ggCr(VI)$. The adsorption amounts of most heavy metal ions were increased in weak alkaline conditions and were reached to an adsorption equilibrium within 10 ~ 30 minutes. The maximum adsorption ratios of Pb(II) and Cd(II) were respectively 99% and 80% of the initial concentration of heavy metal ions. Therefore the anionized cotton fabrics seem to be utilized as an adsorption fabrics for the removal of heavy metal ions in the waste water.

Research of Possibility of Carrageenan as DTP Pre-treatment Thickening Agent for Cellulosic Fabric (카라기난(Carrageenan)의 셀룰로오스 직물 DTP 전처리 호제로써의 가능성 연구)

  • Ki, Saetbyul;Seo, Hyeji;Hong, Jinpyo;Yoon, Seokhan;Shin, Kyung
    • Textile Coloration and Finishing
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    • v.27 no.4
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    • pp.318-326
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    • 2015
  • A pre-treatment process is essential for getting high quality of digital textile printing(DTP). In this study, we have studied three kinds of carrageenan polymer(k-, ${\lambda}$-, i-Carrageenan) as a pre-treatment thickening agent for the first time. Alginate polymer was also examined and its results were compared with that of the three kinds of carrageenan polymer. To confirm the performance of each thickening agent, we examined for a sharpness, color strength and fastness(washing, rub, light). The result showed that ${\lambda}$-Carrageenan has superior property in sharpness with low viscosity and i-Carrageenan was excellent in the color strength among the pre-treatment agents. Washing fastness to color change and staining for the all samples were 4 or 4-5 grade. Both dry and wet rubbing fastness of the samples were 4-5 grade. However, ${\lambda}$-Carrageenan coated sample has the lowest grade in light fastness. As a result, we found the possibility of carrageenan polymer as pre-treatment agent.

Natural Dyeing of Chitosan-crosslinked Cotton Fabrics(I) - Turmeric - (키토산 가교 처리된 면직물의 천연염색에 관한 연구(I) - 울금을 중심으로 -)

  • Kwak, Mi-Jung;Kwon, Jung-Sook;Lee, Shin-Hee
    • Textile Coloration and Finishing
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    • v.20 no.3
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    • pp.8-17
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    • 2008
  • For the purpose of standardization and practicability of natural dyeing, the mordanting and dyeing properties of turmeric was studied. In this study, the colorants of turmeric were extracted with boiling water. Chitosan-crosslinked cotton fabrics was dyed with aqueous extract of turmeric and their dyeabilities on the fabrics were studied. Additionally the fastness to washing and light were also investigated. Cotton fabrics were treated with a crosslinking agent epichlorohydrin in the presence of chitosan to provide the cotton fabrics the dyeing properties of natural dye(turmeric) by the chemical linking of chitosan to the cellulose structure. The chitosan finishing and durable press finishing of the cotton fabrics occurred simultaneously in the mercerization bath. The dyeability(K/S), which was obtained by CCM observation, remarkably became increased when the crosslinked chitosan concentration was higher. Dyeability of turmeric was improved on chitosan-crosslinked cotton fabric rather than only cotton fabric, while the saturated dyeing time was 20minutes at $60^{\circ}C$. The hue value indicated greenish yellow with increasing the crosslinked chitosan concentration. And the color fastness to washing and light was almost the same.

Development of Susceptible Functional Fiber through Chitosan Finishing Treatment of Tencel Blended Fabrics (Part II) -The Change of Physical Properties- (텐셀 혼방직물의 키토산 가공처리를 통한 감성기능소재의 개발 (제2보) -물성의 변화-)

  • Park, Youn-Hee;Bae, Hyun-Sook
    • Journal of the Korean Society of Clothing and Textiles
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    • v.30 no.11 s.158
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    • pp.1572-1582
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    • 2006
  • In this study, in order to compare a Tencel/cotton and a Tencel/Cotton/PET as Tencel blended fabrics with a Tencel fabric, the fabric samples were treated with chitosan after NaOH pretreatment and enzyme treatment thereof, And then its adherent efficiency was enhanced by using a crosslinking agent. After that, it was treated with a softener. In chitosan treatment, the functions of moisture regain, tensile strength, air permeability and crease resistance were more improved in the Tencel blended fabrics than in the Tencel fabric. Thus, it may be thought that the physical properties of the Tencel blended fabrics were more effectively modified than those of the Tencel fabric. And the friction charged voltage was very much reduced in all samples, so that chitosan treatment was effective for prevention of electrostatic charge. Further, chitosan finishing treatment improved remarkably the antibacterial activity in all samples regardless of the type of strains.

Effect of Treating Conditions on Dyeing Property of Anti-Shrinkage Wool Fabric Treated with Chlorination and Monoethanol Aminesulpbite Resin (염소화/Monoethanol Aminesulphite 방축가공의 처리조건이 양모직물의 염색성에 미치는 영향)

  • Hwang, Back-Soon;Lee, Ja-Ho;Park, Jung-Whan;Kim, Duk-Ly
    • Fashion & Textile Research Journal
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    • v.3 no.3
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    • pp.283-289
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    • 2001
  • Shrink resist finishing of wool fabric was carried out with Monoethanol aminesulphite (MONAMIN BTN) shrink resist agent after chlorination with Dichloro isocyanuric acid (DCCA). The purpose of this study is to investigate the effect of treating conditions, such as concentrations of DCCA and MONAMIN BTN, pH of treating bath, dyeing times, curing times and temperatures, on dyeing property of wool fabrics. K/S values and fastness properties of dyed wool fabrics were measured. The K/S values of dyed fabrics were increased gradually with increasing concentration, and decreased with increasing curing time. The optimum dyeing time and curing temperature were 60 min and $140^{\circ}C$, respectively. Also it seems likely that the shrink resist finishing carried out at 3% (o.w.f.) of MONAMIN BTN and pH 7 of resin treating bath is effective in increasing K/S values. Light fastness of fabric dyed was very poor and the fastness of fabric dyed was not influenced by the treatment conditions.

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Development of Susceptible Functional Fibers Using Microencapsulation of Susceptible Materials(III) ―Fragrant Functional Fibers― (감성물질의 마이크로캡슐화에 의한 감성기능 섬유의 개발(III) -방향 기능 섬유-)

  • Kim, Moon Sik;Park, Soo Min
    • Textile Coloration and Finishing
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    • v.8 no.4
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    • pp.11-18
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    • 1996
  • Natural functional compound in the textile finishing for health and amenity using fragrant material have been applied by microencapsulation method. The microcapsules containing fragrant materials as functional compound were produced by in situ polymerization using urea-formaldehyde prepolymer. The average diameter of microcapsules is 2.75$\mu$ and particle size ranges over 0.5~10$\mu$. Fragment material is extracted approximatly proportioned from microcapsule at room temperature. The adsorption of microcapsule was improved by pretreatment of cationic agent. Fragrant materials in microcapsule was revealed to have long release time.

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Preparation of Atactic Poly(vinyl alcohol) Hydrogel by Glutaraldehyde Crosslinking (글루타르알데히드 가교에 의한 혼성배열 폴리비닐알코올 수화겔의 제조)

  • Won Seok Lyoo;In Seok Seo;Byung Chul Ji
    • Proceedings of the Korean Fiber Society Conference
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    • 2001.10a
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    • pp.324-325
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    • 2001
  • Poly(vinyl alcohol) (PVA) is useful for biomaterials such as contact lens, drug delivery system, and biological tissues, because of good biocompatibility and no toxicity. Particularly, hydrogels have unique position in biomaterial fields because of their high water contents.[1-2] Because atactic PVA (a-PVA) is very weak in water, a-PVA need to be chemically crosslinked with crosslinking agent such as glutaradehyde to prepare PVA hydrogels with high water-resistance and good physical properties.[3] (omitted)

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Effects of Natural Vegetable Treatment Agent on the Bleaching and Damage of Human Hair (모발의 탈색 및 손상에 미치는 천연 식물 트리트먼트제의 영향)

  • Lim, Sun-Nye;Choi, Chang-Nam
    • Textile Coloration and Finishing
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    • v.24 no.3
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    • pp.213-220
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    • 2012
  • In this study, we investigated the effect of natural vegetable treatment agent on the bleaching and damage of human hair during permanent wave formation. The vegetable treatment agent was prepared by fermenting the mixture of tea leaves (10g), black rice (100g), black bean (100g), corn (100g), malt (50g), and water(500g) at room temperature for 1 week. The degree of bleaching and damage was checked by Munsell value 'L' and morphological changes of hair in FE-SEM. When the hair was bleached, the Munsell value 'L' was almost same regardless of adding the vegetable treatment to the bleaching solution. But when the hair was permanently waved, the curl formation ability was high and the damage was low in the case of adding the vegetable treatment. This means that the vegetable treatment covers the scale of hair and protects the hair from the chemicals.

The Effects of Drawing Conditions on Physical Properties of the Drawn Worsted Yarns (I) (연신공정 조건이 소모연신사의 물성에 미치는 영향 (I))

  • Han, Won-Hee;Kim, Seung-Jin;Kim, Sang-Ryong
    • Textile Coloration and Finishing
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    • v.22 no.1
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    • pp.51-60
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    • 2010
  • This research works on the effects of drawing conditions on the physical properties of the drawn worsted yarns. The drawn worsted yarns were made by the yarn drawing system under various drawing conditions such as concentration of reducing agent, draw ratio, setting time of drawn yarn, and concentration of oxidizing agent. The drawn worsted yarns from 2/80Nm to 2/90Nm were obtained from 2/60Nm worsted yarns, the surface and cross-sectional shapes and tensile properties of these various specimens were measured and discussed with the various drawing conditions. The drawing of worsted yarn made constituent wool fiber scratched and made it changing to polygonal cross-sectional shape. The tenacity and modulus were increased with draw ratio and concentration of reducing agent. And tensile strain was increased with draw ratio, which decreased with concentration of reducing agent.