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Color Fastness of Dyed Raw Linen Cloth Modified with Enzymes
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作者 Bernava Aina Borisova Anna +1 位作者 Strazds Guntis Reihmane Skaidrite 《Journal of Chemistry and Chemical Engineering》 2014年第7期686-691,共6页
Green thinking looks to develop alternatives with higher environmental advantage that traditional materials or processes. The present experimental studies are directed to investigation of dyeing the linen fabric prepa... Green thinking looks to develop alternatives with higher environmental advantage that traditional materials or processes. The present experimental studies are directed to investigation of dyeing the linen fabric prepared with modification with enzymes. In the research, 1% and 2% solution of cellulase enzyme Beizym ENC-SB (garment auxiliary of enzymes mixture of CHT R. BEITLICH GmbH/BEZEMA AG) and pectinase Beisol PRO (enzymes mixture for cleaning cellulose fibers of CHT R. BE1TLICH GmbH) enzyme solutions were used. The main objective of this work is focus on results studies of enzyme influence on dyeing of flax fabric with direct Solphenyl dye triade Blue FGLE (economical, fairly good light fast blue, main trichromatic component for medium shades with high wash fastness), Scarlet BNLE (economical scarlet, main trichromatic component for medium to dark shades) 200%, and Yellow GLE (very bright neutral yellow, main trichromatic component for high wash fastness requirements). The dye-bath exhaustion, color fastness to rubbing and washing were estimated. The color parameters before and after tests were calculated. 展开更多
关键词 Raw linen cloth PECTINASE cellulase enzymes modification direct dye color fastness.
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Effect of Atmospheric Pressure Plasma and Subsequent Enzymatic Treatment on Flax Fabrics
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作者 钟少锋 杨彬 区琼荣 《Plasma Science and Technology》 SCIE EI CAS CSCD 2015年第9期767-773,共7页
The objective is to investigate the effect of atmospheric pressure dielectric barrier discharge(APDBD) plasma and subsequent cellulase enzyme treatment on the properties of flax fabrics.The changes of surface morpho... The objective is to investigate the effect of atmospheric pressure dielectric barrier discharge(APDBD) plasma and subsequent cellulase enzyme treatment on the properties of flax fabrics.The changes of surface morphology and structure,physico-mechanical properties,hydrophilicity,bending properties,whiteness,and dyeing properties of the treated substrate were investigated.The results indicated that atmospheric pressure dielectric barrier discharge plasma pre-treatment and subsequent cellulase enzyme treatment could diminish the hairiness of flax fabrics,endowing the flax fabrics with good bending properties,water uptake and fiber accessibility while keeping their good mechanical properties compared with those treated with cellulase enzyme alone. 展开更多
关键词 flax fabrics APDBD plasma cellulase enzyme surface modification
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