• Title/Summary/Keyword: leather technology

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Study on The Application Case of Clean Technology of Leather Manufacture through technical transfer of chrome reduced tanning process (청정 피혁 생산을 위한 저크롬 탄닝 공정 기술 보급에 관한 사례 연구)

  • Kim, W.J.;Kim, H.H.;Lee, S.C.;Park, K.S.;Heo, J.S.
    • Clean Technology
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    • v.10 no.1
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    • pp.27-35
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    • 2004
  • Domestic leather company is working hard to solve present environmental problem. Leather industry is realized by representative pollution industry. An advanced nation is trying to develop clean technology by collaborating research institute with the chemical company, and tannery. This research introduced information that is gained through technical transfer in leather processing. This project started to solve environmental problem of leather industry. Specially the environment and economic problem is caused from chrome which exists in the waste water or solid waste. Representative technologies, reduced chrome tanning, non-chrome tanning method, are being introduced through transfer. Also lightweight leather development advances the research which uses non-metal tanning agent.

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Preparation and application of Environment friendly Organic tanning agent for Replacement of Cr in Clean leather tanning process (피혁용 크롬 대체 친환경 유제 공정 처리제 제조 및 응용)

  • Park, Jae Hyung;Yun, Jong Kuk;Paik, In Kyu;Cho, Do Kwang;Cho, Nam Soo
    • Clean Technology
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    • v.11 no.2
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    • pp.83-90
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    • 2005
  • This paper is about a new method of synthesis organic tanning agent (polymer, polyphenol, polyresin) and discusses their tanning property. It was found that properties of the leather manufactured with application of organic tanning agent were similar to those applied with conventional chrome tanning agent and reducing effects of Cr, T-N, COD, SS concentrations in the effluent.

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The development of dyeing process by ultrasonics wave for clean technology (초음파를 이용한 피혁의 친환경 염색공정 기술 개발)

  • Kim, W.J.;Kim, H.H.;Kim, S.C.;Park, K.S.
    • Clean Technology
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    • v.10 no.1
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    • pp.19-25
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    • 2004
  • The leather was fixed with various colors through the dyeing process in leather manufacturing. During the dyeing process, the amount of 30~50% dyestuff which were not bonded with leather drained with waste water. These dyestuff raise lots of environmental problems, so technology for improving the fixing effect, levelling effect and penentration effect with the use of small amount of dyestuff has been required. Also, insufficient color fastness level 2~3 grade for common natural leather needs to be improved at the same time. Accordingly, the use of ultrasound(us) in dyeing process has decreased the amount of dyestuff and obtained the smooth permeability effect. So, we could find that the reduction of amount of dyestuff in wastewater led to decrease in environmental trouble caused by leather waste water with severe contamination degree and improved fastness up to 0.5 grades.

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The technical transfer on manufacture technique of environmental-friendly leather for improved effluent in beamhouse process (피혁 폐수의 오염 저감을 위한 피혁 준비 공정 기술 보급 (Hair saving liming agent 제조 기술 및 공정 적용 기술 보급))

  • Yun, Jous-Kuk;Cho, Do-Kwang;Park, Jae-Hyung;Baek, In-Kyu;Kim, Han-do
    • Clean Technology
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    • v.10 no.2
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    • pp.111-120
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    • 2004
  • Manufacturing with a chemical for eco-friendly leather for nitrogen decrease of leather falling hair process waste water and the falling hair process that a number to decrease with sulfuration water decrease, a pollution load of COD, BOD. In this study manufactured lining agent and the unhairing assist product which did urea, mercaptan by basic matter. As a result of having dealt in hair saving process, compared, and was recalled by the existing hair burning process recovered hair, increased approximately 2times. Grain state to influence the yield that was quality of leather and an index of productivity evaluation, an improvement of contraction phenomenon (drawing) were possible. Is increased going seal, tear strength property of matter and softness and touch leather native nature in wet blue. Also, it is possible confirmation with decrease being more possible than about 50% COD, T-N density in a hair saving waste water.

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The Effect of Fumed Silica Loading on the Thermal Stability of Fluorosilicone Composites

  • Muhammet Iz;Jinhyok Lee;Myungchan Choi;Yumi Yun;Hyunmin Kang;Jungwan Kim;Jongwoo Bae
    • Elastomers and Composites
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    • v.57 no.4
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    • pp.165-174
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    • 2022
  • The effect of fumed silica loading on the thermal stability and mechanical properties of fluorosilicone (FVMQ) rubber was investigated. The distribution of fumed silica inside FVMQ was characterized using scanning electron microscopy, and the thermal stability of composites was evaluated using thermogravimetric analysis and by the changes in mechanical performance during thermo-oxidative aging. The function mechanism of fumed silica was studied by Fourier transform infrared spectroscopy. The results show that with increasing silica content, the crosslink density of composites, the modulus at 100%, and tensile strength also increased, whereas the elongation at break decreased. Furthermore, increasing the silica content of composites increased the initial decomposition temperature (Td) and residual weight of the composite after exposure to nitrogen. In addition, the thermal oxidative aging experiment demonstrated improved aging resistance of the FVMQ composites, including lower change in tensile strength, elongation at break, and modulus at 100%.

A Study of laminated split leather Process using Thermally Sensitive Color-change(Microcapsule) (감온 Microcapsule염료를 이용한 Laminated Split Leather Film 공정 연구)

  • Lee, Sang-Heon;Lee, Sang-Chul;Shin, Eun-Chul;Kim, Won-Ju
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2012.03a
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    • pp.100-100
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    • 2012
  • 상품성이 떨어지는 B, C급의 Split leather에 감온 기능성 Film을 부착하고, Film 부착 공정에서 유성 접착제의 사용을 배제한 친환경적인 고급 Laminated split leather를 제조 하였다. 온도에 따라 색이 변하는 감온 Microcapsule 염료를 이용한 Film의 색도, Touch감과 신장 등의 최적조건을 찾는 실험으로서 수성 PU 접착제, Wetting&levelling agent, 증점제, 감온 microcapsule 염료를 상온에서 혼합하여 Film을 제조한 다음 수성 PU 접착제와 Urethane용 경화제를 혼합한 접착제를 이용하여 가죽에 부착시켰다. 감온 microcapsule자체의 색도가 떨어지므로 두 번 코팅하는 방법으로 이 문제점을 보완 하였으며, 감온 microcapsule 염료의 함량에 따른 물성 평가를 하였고, 감온 microcapsule 염료를 이용한 Film 공정을 확립 하였다.

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A Study on Anti-Aging Properties of Recycled Leather Using Shaving Scrap by Applying Antioxidant (피혁 폐기물을 재활용한 재생가죽의 내노화특성 연구)

  • Eun Ho Seo;Sung Wook Lim;Yun Seob Lee;Won Joo Kim;Eun Young Park
    • Textile Coloration and Finishing
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    • v.35 no.3
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    • pp.151-158
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    • 2023
  • In this study, we investigated the durability properties of the recycled leather using shaving scrap with antioxidant. Recycled leather sheets were manufactured by mixing shaving scrap and NB latex as a binder. HALS(Hindered Amine Light Stabilizer) and UVA(UV absorbers) were used as antioxidant. Mechanical properties such as hardness, tensile strength, elongation, tear strength and abrasion resistance were measured. Light aging resistance was evaluated using UV lamp and the degree of discoloration of the recycled leather sheets using a gray scale. In addition, to evaluate heat aging and UV aging, the degree of discoloration of the recycled leather sheets over time was measured using colorimeter. Washing fastness was evaluated on the degree of dyeing of recycled leather sheets for six type of multi-fiber woven fabrics (Acetate, Cotton, Nylon-66, Polyester, Acryl, Wool). To determine whether hazardous substances were detected in recycled leather sheets, the contents of arylamine and Cr 6+ were evaluated. As a result, when used in combination with antioxidant, the heat aging and light aging of recycled leather were improved and hazardous substance were not detected.

Process for the Production of Aldehyde Tanning Agent from Starch (Starch를 원료로 알데하이드 탄닝제의 제조 공정 연구)

  • Park, Jae Hyung;Paik, In Kyu;Yun, Jong Kuk;Cho, Do Kwang;Jung, Woon Gil
    • Clean Technology
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    • v.11 no.1
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    • pp.51-56
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    • 2005
  • In this paper we prepared dextrin dialdehyde (DAS) of a different oxidation ratio (aldehyde content) and examined their properties and discussed their tanning mechanism. DAS was produced by reacting dextrin in aqueous medium with periodate ion used in a molar ratio between periodate and glucose of 0.3 to 1.0 at a temperature of 20 to $45^{\circ}C$. Since DAS reacts with amino group, DAS may have tanning property of aldehyde tanning agent (formaldehyde, glutaraldehyde).

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