• Title/Summary/Keyword: Cellulase treatment

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The Effect of Cellulase Treatment on the Crease Resistance of Cotton (Cellulase처리가 면직물의 방추성에 미치는 영향)

  • Song, Kyung-Hun
    • Korean Journal of Human Ecology
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    • v.9 no.4
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    • pp.483-489
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    • 2000
  • The purpose of this study is to verify the effect of cellulase treatment on crease resistance of cotton. Cotton fabrics was treated with cellulase under different concentration at $50^{\circ}C$ for 40 min. Also to compare the effect of DMDHEU treatment, DMDHEU treatment was conducted before and after cellulase treatment, also with cellulase. Weight loss, crease resistance and tentile strength of each samples were measured and compared. Maximum weight loss showed at 1g/l con. with 40 min. treatment. Cellulase enzyme treatment was more effective than DMDHEU in the crease resistance and tensile strength. Crease resistant of cotton which treated under different condition with cellulase and DMDHEU showed in the order of cellulase+DMDHEU> cellulase> DMDHEU treatment. Also, tensile strength showed in the order of cellulase> cellulase+DMDHEU> DMDHEU. Among those treatment conditions, condition which treated with cellulase considered more effective to increase crease resistance while keeping tensile strength too.

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Development of Surface Modified Tencel Fabrics through the Control of Fibrillation(Part I) -Fibrillation Control Effect through Crosslinking Agent Treatment- (피브릴화 조절을 통한 다양한 감성의 텐셀소재 개발(제1보) -가교체 처리를 통한 피브릴화 조절효과-)

  • 신윤숙;손경희
    • Journal of the Korean Society of Clothing and Textiles
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    • v.25 no.1
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    • pp.144-153
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    • 2001
  • The effect of crosslinking on hand of the cellulase treated Tencel fabrics was investigated. Tencel fabrics were crosslinked with DMDHEU, mechanically prefibrillated, hydrolyzed by cellulase, and treated with softener. The treated fabrics were characterized by add-on, weight loss, DP rating, WRA, strength, SEM analysis and hand measurement. As DMDHEU concentration increased, weight loss of DMDHEU/cellulase treated fabrics decreased. However, cellulase treatment decreased DP properties and strength retention. Less fibrils were observed in the cellulase treated fabrics after DMDHEU treatment than the cellulase treated ones. It was confirmed that crosslinking with DMDHEU treatment was effective to control fibrillation. At 5% of DMDHEU concentration, DMDHEU/cellulase treated fabrics showed softer, smoother and bulkier hand compared with other treated fabrics. Among mechanical properties, bending and shearing properties were decreased progressively through DMDHEU, cellulase, and softener treatment. DMDHEU treatment contributed to impart resilience, cellulase treatment to bulkiness and softener treatment to smoothness. As the treatment of DMDHEU, cellulase, and softener progressed NUMREI, FUKURAMI, and THV increased with the exception of KOSHI.

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Changes in Surface Shape and Physical Properties of Acetate Fabrics by Alkaline and Cellulase Treatment (알칼리와 셀룰라아제 처리에 의한 아세테이트 직물의 표면 형태 및 성능의 변화)

  • 이애진;이혜자;유혜자
    • Textile Coloration and Finishing
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    • v.13 no.1
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    • pp.9-17
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    • 2001
  • The purpose of this study is to present basic data for the enzymatic modification of acetate fabrics. The weight loss and rate of weight loss of acetate fabrics increased with increasing NaOH concentration and treating time. Acetyl value decreased as the weight loss became higher. The weight loss of alkaline-treated acetate fabrics were directly proportional to the concentration and treating time of cellulase. The optimum temperature and pH in cellulase treatment were $55^\circ{C}$ and pH 3.5. The surface shape revealed that density of fiber decreased by alkaline-treatment. With the treating time of cellulase, fibrillation occurred. In case of higher weight loss in alkaline treatment, fibril is removed after 180 min. The tensile strength decreased by alkaline and cellulase treatment. Especially, in case of higher weight loss of alkaline treatment, tensile strength decreased suddenly. Alkaline treatment increased the drapability of acetates, while cellulase treatment increased it initially but decreased gradually with treatment time. The dyeability after alkaline treatment was improved for reactive dye, but deteriorated for disperse dye. The cellulase treatment of acetate lowered the dyeability for both types of dyes.

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Hydrolysis of Tencel Fabrics by Cellulase Treatment (셀룰라아제 처리에 의한 텐셀직물의 가수분해)

  • 손경희;신윤숙
    • Korean Journal of Human Ecology
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    • v.2 no.1
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    • pp.142-148
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    • 1999
  • Tencel fabrics were treated with cellulase after mechanical prefibrillation treatment. SEM analysis was carried out to study morphological change of the treated fabric. The cellulase-treated Tencel fabrics were evaluated for weight loss and tensile strength. X-ray diffraction method, moisture regain, and K/S value were used to elucidate crystalline structural changes occurred by cellulase treatment. Degree of polymerization and copper number of the cellulase-treated fabrics were also measured to estimate effect of hydrolysis. SEM analysis indicated that with treatment of prefibrillation and cellulase, fibrils were produced and damage occurred deep into the fiber. Increases in concentration and time of cellulase treatment increased weight loss and decreased tensile strength retention of the treated fabrics. As cellulase hydrolysis progressed, degree of crystallinity, moisture regain and K/S value were not much changed. (Korean J Human Ecology 2(1) : 142∼148, 1999)

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Effect of Cellulase Treatment on Mechanical Properties and Hand of Tencel Fabrics (효소처리에 의한 텐셀직물의 역학적 성질 및 태의 변화)

  • 손경희;신윤숙
    • Journal of the Korean Society of Clothing and Textiles
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    • v.22 no.8
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    • pp.1141-1149
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    • 1998
  • Tencel fabrics were treated with NaOH, mechanically prefibrillated, and hydrolyzed by cellulase. Softner was applied to improve hand of the treated Tencel fabrics after prefibrillation and cellulase treatment. Kawabata's Evaluation System for Fabrics(KES-FB) was used to evaluate effects of NaOH pretreatment, prebifrillation, and cellulase and softner treatments on fabric hand of the treated fabrics. Primary hand values of women's medium thick fabrics such as KOSHI, NUMERI, FUKURAMI, and SOFUTOSA, and total hand values were evaluation parameters. As the treatments of prefibrillation, cellulase, and softner progressed, values in bending and shearing properties decreased and softness and elasticity were imparted to the treated fabrics. Specifically, compressional linearity, compressional energy, and thickness of the treated fabrics increased by prefibrillation, providing bulkiness to the treated fabrics. Values indicating surface properties increased owing to fibrils formed by prefibrillation treatment, but removal of fibrils by cellulase treatment enhanced smoothness. As the fabrics were exposed to various treatments such as NaOH pretreatments, prefibrillation, and cellulase and softner treatments, NUMERI, FUKURAMI, SOFUTOSA, and total hand values increased with the exception of KOSHI, Consequently, the treated fabrics became softer, smoother, and more elastic. Especially, the NaOH pretreatment provided superior SOFUTOSA to Tencel fabrics.

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The Change of the Physical Properties of Rayon/Cotton Blend Fabrics Treated with Cellulase by Addition of Silicon (셀룰라아제 처리시 실리콘 첨가에 따른 레이온/면 혼방직물의 물성변화)

  • 이선화;송화순
    • Journal of the Korean Society of Clothing and Textiles
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    • v.22 no.8
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    • pp.1032-1042
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    • 1998
  • The purpose of this study is to measure, compare, and investigate the physical properties of rayon/cotton blend fabrics treated with cellulase and cellulase & specific degeneration silicon and to present basic data which is in development a value-added fabric. The results are as follows. The condition for the treatment of cellulase was at 55$^{\circ}C$, pH 4 and the weight loss increased as the concentration of cellulase and the treated time increased. On treatment with cellulase, the crossectional view & longitudinal view of fiber noticed remarkable crack as weight loss increased and tensile strength and elongation decreased, and pilling was enhanced remarkably. KOSHI was increased, NUMERI and FUKURAMI were decreased as weight loss increased. In the basic characteristic value of clothing wearning, shape stability and drapability were decreased, but air content was improved. On treatment with cellulase & silicon, the degree of damage in the crossectional view & longitudinal view of the fiber reduced. Tensile strength, elongation, moisture regain improved. KOSHI and FUKURAMI were reduced, NUMERI was improved rather than when it was treated with cellulase. Therefore handle was improved. In the basic characteristic value of the clothing wearing, shape stability, air content, drapability were improved.

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The Bio-Softness Finish of Tencel fabric(Part I) (텐셀직물의 바이오-유연가공에 의한 물성변화(제1보))

  • 김인영;오수민;송화순
    • Journal of the Korean Society of Clothing and Textiles
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    • v.23 no.1
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    • pp.14-21
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    • 1999
  • The Tencel fabrics were treated with bio-softness finish to improve softness. The change of the properties depending on the softner as well as cellulase treatment was investigated. The relative activity of cellulase for tencel was maximum ap pH 4-4.3 cellulase concentration 14-16% (o. w .f) treatment time 4 hour and liquor ratio 100: 1 The treatment of epoxy silicon softner improved in pilling whiteness dye absorption of Tencel fabric.

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Fungal Strain Improvement for Cellulase Production Using Repeated and Sequential Mutagenesis

  • Vu, Van-Hanh;Pham, Tuan-Anh;Kim, Keun
    • Mycobiology
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    • v.37 no.4
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    • pp.267-271
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    • 2009
  • A fungal strain producing a high level of cellulase was selected from 320 fungal isolates and identified as Aspergillus sp. This strain was further improved for cellulase production by sequential treatments by two repeated rounds of $\gamma$-irradiation of $Co^{60}$, ultraviolet treatment and four repeated rounds of treatment with N-methyl-N'-nitro-N-nitrosoguanidine. The best mutant strain, Aspergillus sp. XTG-4, was selected after screening and the activities of carboxymethyl cellulase, filter paper cellulase and $\beta$-glucosidase of the cellulase were improved by 2.03-, 3.20-, and 1.80-fold, respectively, when compared to the wild type strain. After being subcultured 19 times, the enzyme production of the mutant Aspergillus sp. XTG-4s was stable.

The Washing Finish of Blue Jeans(I) - the comparison of neutral cellulase, acid cellulase, stone, and stone-neutral cellulase washings - (청바지의 세탁가공에 관한 연구(I) -세탁가공의 종류를 중심으로-)

  • 신혜원;유효선
    • Journal of the Korean Society of Clothing and Textiles
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    • v.21 no.2
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    • pp.471-481
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    • 1997
  • Denims were treated with neutral cellulase, acid cellulase, stone, and stone-neutral cellulase respectively at different cellulase concentrations varying treatment times in rotary washer. The effect of washing on denim was estimated by the changes in weight, color, back staining, tear strength, flex stiffness, and surface characteristics. Also the comparison of neutral cellulase, acid cellulase, stone, and stone-neutral cellulase washings was studied. Washing removes surface fibers and provides weight loss, color difference, back staining, and a decrease in tear strength and in flex stiffness. Stone-neutral cellulase washing and acid cellulase washing have a larger washing effect than neutral cellulase washing and stone washing.

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The Effect of Cellulase Treatment on the Physicochemical Properties of Rice and the Texture of Cooked Rice (Cellulase 처리가 쌀의 이화학적 특성 및 밥의 텍스쳐 특성에 미치는 영향)

  • Kim, Young-Kyung;Ahn, Seung-Yo
    • Korean Journal of Food Science and Technology
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    • v.28 no.4
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    • pp.720-729
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    • 1996
  • Effect of the cellulase treatment on the physicochemical properties of three varieties of rice (chucheongbyeo, chosengtongilbyeo and IR 36) and the texture of cooked rice were investigated. The swelling power and solubility of the rice flours were increased and amylographic viscosities, especially cold viscosities were decreased by cellulase treatment in all varieties. Gel chromatography of soluble carbohydrates from cellulase-treated rice flours on sepharose 2B-CL showed a singificant increase of low molecular weight $(10^{4})$ fraction which might be produced upon hydrolysis in endosperm cell wall constituents. The hardness of cooked rices prepared from cellulose-treated rices significantly decreased.

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