• 제목/요약/키워드: 오구 세척성

검색결과 15건 처리시간 0.019초

지용성/고형오구의 혼합오염계에서 지용성오구의 혼합특성에 따른 PET직물의 세척성 (Effects of Mixed Characteristics of Oily Soil on Detergency of PET Fabric in Oily/Particulate Soil Mixed System)

  • 강인숙
    • 한국의류학회지
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    • 제35권10호
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    • pp.1242-1251
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    • 2011
  • This study investigates the effect of mixed characteristics of oily soil such as mixed ratio, polarity of oily soil on contact angle of fabric, removal of oily and particulate soil from PET fabric in oily/particulate soil mixed system. The contact angle of fabric in the surfactant solution with suspended oily soil was examined as a fundamental environment of detergency of soil from fabrics. Detergency was investigated as function of mixed ratios of oily/ particulate soil, type of oily soil, surfactants concentration, surfactant type and temperature of detergency in surfactant solution. The contact angle of fabric in surfactant solution sharply increased with mixing nonpolar oily soil; in addition, the contact angle slightly increased with increasing contents of oily soil and decreased with increasing surfactant concentration. The removal of oily and particulate soil from fabric was higher in the solution mixed with polar versus nonpolar oily soil. The detergency increased with increasing surfactant concentration and the increased temperature of surfactants solution that were relatively improved in NPE compared to DBS solutions, The results indicated that the detergency of oily and particulate soil showed a similar trend in oily/ particulate mixed soil systems. The general contact angle of fabric was well related with the detergency of oily and particulate soil in oily/particulate mixed soil system, therefore, the primary factor determining the detergency of soil in oily/particulate mixed soil system may be the contact angle of fabric caused by wettability.

음-비이온계 혼합계면활성제 용액에 있어 입자에의 계면활성제 흡착량이 고형오구의 분산안정성에 미치는 영향 (Effect of Adsorption of Surfactant to the Particles on Dispersion Stability of Particulate Soil in Anionic-nonionic Surfactant Mixed Solution)

  • 정선영;강인숙
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 2003년도 봄 학술발표회 논문집
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    • pp.436-437
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    • 2003
  • 고형오구의 분산안정화 작용은 고체 입자의 계면에 흡착한 계면활성제에 의한 전기적 반발력과 입체적 보호작용에 영향을 받게 된다. 특히 현재 시판세제의 조성에서 비이온계 계면활성제의 혼합이 점차 중요시되는 이때 입체적 보호작용에 의한 고형오구의 분산안정성은 의류제품의 세척성 제고에 좋은 정보가 되리라 생각된다. 따라서 본 연구는 시판되고 있는 세제 대부분이 음-비이온계 계면활성제의 혼합으로 되어 있는 점을 고려하여 음이온 계면활성제로서 D5S(sodium dodecyl benzene sulfonate), 비이온계 계면활성계 NPE(nonyl phenol polyoxyethylene ether, EO$_{10}$) 혼합용액에서 음이온과 비이온계 계면활성제의 입자에의 흡착과 고형오구의 안정성을 관련시켜 고찰하였다. (중략)

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친수 및 소수처리 PET직물의 고형오구의 세척성 (Detergency of Particulate Soil of PET Fabric Finished with Hydrophilic and Hydrophobic Chemicals)

  • 강인숙
    • 한국의류학회지
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    • 제36권11호
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    • pp.1237-1245
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    • 2012
  • The effect of hydrophilicity and hydrophobicity of PET fabric on the detergency of particulate soil were investigated as functions of the concentration of hydrophilic and hydrophobic chemicals, surfactant concentration, ionic strength, adhesion and removal time, and pH. The detergency of the particulate soil was determined by the adhesion of particles to and their removal from fabric, the PET fabric and ${\alpha}-Fe_2O_3$ were used as textile materials and for the model of particulate soil, respectively. The hydrophilic and hydrophobic finish for PET fabric was treated with a polyester, silicone and fluorine organic compound of resin respectively. The adhesion of particulate soil to fabric treated with hydrophobic chemicals were slightly higher but its removal from fabric treated with hydrophobic chemicals was largely higher than fabric treated with a hydrophilic chemical regardless of solution conditions such as the concentration of hydrophilic and hydrophobic chemicals, surfactant concentration, ionic strength, adhesion and removal time, and pH. Therefore, hydrophobic treatment for fabric had a more positive effect than the hydrophilic treatment on the detergency of particulate soil.

고형오구 입자크기가 고형오구의 세척성에 미치는 영향 (The Effect of Particle Size on the Detergency of Particulate Soil)

  • 문미화;강인숙
    • 한국의류학회지
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    • 제34권4호
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    • pp.653-662
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    • 2010
  • This study investigates the effect of particle size on the detergency of particulate soil using an $\alpha-Fe_2O_3$ particle as the model. Monodispersed spherical $\alpha-Fe_2O_3$ particles were prepared by the hydrothermal aging of an acidic $FeCl_3$ and HCl solution. The $\xi$-potential of PET fiber was measured by the streaming potential method. The potential energy of interaction between the particle and fiber was calculated using the heterocoagulation theory for a sphere-plate model. The $\xi$-potential of PET fiber and potential energy of interaction between particles and fiber increased with a decreasing particle size in a DBS solution. However, in the nonionic surfactant solution, the $\xi$-potential signs of PET fiber and $\alpha-Fe_2O_3$ particles were (-) and (+), respectively; there was no repulsive power between the particles and substrate. The adhesion of particles to the fabric increased with increasing particle size in the anionic surfactant solution and their removal from the fabric increased with a decreasing particle size. The adhesion of particles to the fabric and their removal from the fabric was biphasic with a maximum and minimum at 0.1% concentration of the surfactant solution. In the nonionic surfactant solution the adhesion of particles to fabric and their removal from the fabric were greater than the ones in the anionic surfactant DBS solution.

아크릴산 그라프트 중합한 나일론 직물의 헤모글로빈 오구 세척성 -그라프트 나일론 직물에 대한 헤모글로빈 부착상태와 세척성- (Removal of Hemoglobin from Acrylic Acid Grafted Nylon Fabric The Removal and the State of Adhesion of Hemoglobin on Grafted Nylon Fabric-)

  • 오수민;김인영;송화순
    • 한국염색가공학회지
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    • 제11권3호
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    • pp.41-48
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    • 1999
  • The removal of hemoglobin from acrylic acid grafted Nylon fabrics has been investigated. In order to change detergency of Nylon 6 fabric, acrylic acid(AA) were graft copolymerized on Nylon fabric using ammonium persulfate(APS) as a initiator, and then acrylic acid grafted Nylon was treated with NaOH solution. The graft ratio increased linearly with increasing acrylic acid concentration. The graft ratio was the highest when the concentration of APS was 0.05%, and it decreased as the concentration of APS increased. The surface of Nylon fabric became rough due to graft. Moisture regain was increased by graft and alkaline treatment, contact angle was also improved compared with the ungrafted. The hemoglobin was easily solubilized and removed from grafted Nylon fabric, while it was difficult to remove hemoglobin from ungrafted Nylon fabric. The effects of graft on removal of hemoglobin was related with increase of moisture regain and transformation of COOH to COONa by alkaline treatment.

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나일론 6 직물의 아크릴산 그라프트 중합과 그라프트 나일론의 세척성 -그라프트 나일론 직물의 헤모글라빈 오구 세척성 향상- (The Effect of Graft using Acrylic Acid on the Detergency for the Nylon 6 Fabric -Improvement of Hemoglobin Removing Rate on Grafted Nylon-)

  • 오수민;김인영;송화순
    • 한국의류학회지
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    • 제23권7호
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    • pp.1064-1072
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    • 1999
  • Nylon fabric was grafted for the purpose of the development of detergency against the hemoglobin as a protein soil. By free-radical producing chemical initiator systems the graft using acrylic acid(AA) as a hydrophilic vinyl monomer was performed to change surface energies in the presence of ammonium persulfate(APS) as an initiator and then acrylic acid grafted Nylon was treated with NaOH solution. The surface morphology for Nylon-g-NaAA with changing graft rate were studied by scanning electron microscopy (SEM) The properties of the Nylon such as diameter tenacity elongation contact angle and the hemoglobin removal were also investigated. The diameter of grafted Nylon fiber increased as the graft ratio increased. The tenacity of grafted Nylon also increased with increasing graft ratio up to 15% The elongation however decreased gradually according to graft, The contact angle decreased after graft and alkaline treatment. The amount of hemoglobin on the grafted Nylon increased in proportion to the graft ratio. Hemoglobin was easily removed from grafted Nylon while it was difficult to be removed from ungrafted Nylon. The detergency of hemoglobin for grafted Nylon decreased when the graft ratio exceeded 15% The removal of hemoglobin increased markedly with increasing hemoglobin content and revolution speed. Therefore the removal of hemoglobin was improved due to graft and alkaline treatment.

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입자의 분산안정성이 고형오구의 세척성에 미치는 영향(제1보) - Nonyl Phenol Polyoxyethylene Ether 용액 내에서 α-Fe2O3 입자의 분산안정성 - (Effect of Dispersion Stability of Particles on Detergency of Particulate Soil(Part 1) - The Dispersion Stability of α-Fe2O3 Particles in the Nonyl Phenol Polyoxyethylene Ether Solution -)

  • 강인숙
    • 한국의류산업학회지
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    • 제4권1호
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    • pp.86-91
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    • 2002
  • To estimate dispersion stability of particles, suspending power and particle size were examined as functions of pHs, surfactants, electrolytes and ionic strengths using ${\alpha}-Fe_2O_3$ particle as the model of particulate soil. Suspending power and particle size were determined by UV-Vis spectrumeter and by light scattering using the polarization ratio method, respectively. The suspending power was relatively high with polyanion electrolytes and was low with neutral salts. The suspending power was biphasis, minimum pH 6~7, and the effect of surfactant on the suspending power was insignificant. Generally suspending power increased with decreasing the particle size governed aggregation of dispersed particles regardless of solution conditions. Hence the suspending power was inversely related to the particle size.

세탁용수의 특성에 따른 코코아 오구의 세척성과 색상 (Effect of Washing Solution Characteristics on the Removal and Color of Cocoa Stains)

  • 정혜원;김효정
    • 한국의류산업학회지
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    • 제14권3호
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    • pp.492-500
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    • 2012
  • Cocoa is a popular drink for children and contains healthy polyphenols however; a deep brown stain is left when cocoa is spilled over clothes. The main pigments in cocoa are anthocyanins that change in washing solutions with different alkalinity and metals. The removal and color changes in a cocoa stain after washing with various pH solutions and water hardness were studied. Alkalinity and the water hardness of washing solutions were important factors for the removal of cocoa stains. The removal of cocoa things in washing solutions without detergent was low (and even became negative after removal and darker) in solutions with a pH 9 and above. The cocoa stain was not removed and only the fabric color faded, although the cocoa stained cloth was washed with Korea tap water that has a pH of 7. The cocoa stain removal in detergent solutions was conspicuously higher than for only water. Even in detergent solutions, the cocoa stain removal decreased as water hardness increased. Cocoa stain removal was more effective and the color dimmest when the stained cloth was washed in a solution without the metal cations, and the bleach added with the detergent at a temperature of $40^{\circ}C$ and for longer than 20 minutes. Effective and economical equipment for tap water softening for a washing machine should be developed and used to improve cocoa stain removal.

트리팔미틴 오구포의 세척성에 미치는 리파제의 효과 (The Effect of Lipase on the Removal of Tripalmitin Soiled Fabric)

  • Lee, Nan Hyung;Rhyu, Hyo Sun;Kim, Sung Reon
    • 한국염색가공학회지
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    • 제8권4호
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    • pp.31-41
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    • 1996
  • This study was carried out to examine the effect of lipase on the removal of tripalmitin in the various conditions of washing. The soiled fabric was prepared by spotting of tripalmitin solution evenly on the polyster fabric and was baked in the oven and was aged for a week. The soiled fabric was washed by using Terg-O-Tometer at various conditions. The detergency was evaluated by analysing the tripalmitin tagged with $C^{14}$ on the fiber before and after washing by means of liquid scintillation counting.g.

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Protease (Subtilisin Carlsberg) 가 혈액 단백질 오구의 제거에 미치는 영향(II) -헤모글로빈 오구포의 세척성- (Effect of Pretense (Subtilisin Carlsberg) on the Removal of Blood Protein Soil (II) -The Detergency of Hemoglobin from Cotton Fabics-)

  • 이정숙;김성연
    • 한국의류학회지
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    • 제20권4호
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    • pp.655-666
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    • 1996
  • The effect of protease (subtilisin Carlsberg) on the removal of hemoglobin as protein soil was studied. The relation between the renloval and the hydrolysis of hemoglobin by subtilisin Carlsberg was discussed. The soiled babric was prepared by spotting of hemoglobin solution evenly on the cotton fabric and was denatured by steaming. The soiled fabric was washed by using Terg-0-Tometer at various conditions. The removal efficiency was evaluated by analysis of protein on the fabrics before and after washing by means of copper-Folin method. 1. The removal of hemoglobin was increased in proportion to increasing of the enzyme concentration up to a certain point, but it began to decrease above the point. 2. The hemoglobin was removed effectively by adding of subtilisin Carlsberg, and more effectively removed by adding of AOS in the enzyme solution. 3. The removal of hemoglobin deviated from the first order reaction in detergency. 4. The renloval of hemoglobin was highest at $50^{\circ}C$ in detergency, Even at low temperature the removal efficiency of enzyme was relatively higher compared with the hydrolysis of hemoglobin by the enzyme. However the removal of hemoglobin was apparently decreased with the increase of temperature over $60^{\circ}C$. 5. The removal of hemoglobin was relatively high at pH 7.0~8.0 and increased continuously with the increase of pH in detergency 6. In detergency, the removal mechanism of hemoglobin by subtilisin Carlsberg could be explained as follows: Fisrt of all, the enzyme hydrolyzed hemoglobin substrates partially by forming E-S complex at the surface of hemoglobin on the cotton fiber, and decomposed cooperative binding of hemoglobin. Subsequently, the fragments of hemoglobin were easily removed by washing. According as the enzyme penetrated to inner part of hemoglobin gradually, the hemoglobin on the cotton fiber was effectively removed by the repetition of these process. The removal of hemoglobin was more effectively increased by adding both the enzyme and AOS in the washing solution. Therefore, it was regarded that AOS molecules were adsorbed at the hydrophobic surface of denatured hemoglobin, subsequently, decomposed more effectively cooperative binding of hemoglobin, and the fragments of hemoglobin were removed more efficiently by means of the interfacial reaction of AOS.

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