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Content available remote Reuse of effluent water obtained in different textile finishing processes
EN
The use of clean water in textile finishing is both common and very expensive. Effluent water subjected to advanced methods of physical, chemical, and biological treatment could be used for this purpose. However, information obtained from industry and the literature shows that effluent water obtained from different finishing processes may be reused without being totally purified. In this paper, a method is proposed to determine the viability of reusing effluent water obtained from different textile finishing processes of cotton fabrics after just basic treatments. These treatments include; filtering, airing, pH regulating and ion exchange. Effluent water obtained in different textile finishing processes was analysed in terms of pH value, COD (Chemical Oxygen Demand), SS (Suspended Solids), colour, hardness and conductivity. Effluent water for treatment and the process where the treated water was reused were determined by means of the proposed method, based on a multiple criteria decision making approach. A laboratory scale trial was conducted to investigate the efficiency of treatment.
2
Content available remote Effect of the draft ratio on the properties of vortex spun yarn
EN
In this study, the effects of draft ratios on the properties of vortex spun yarns were investigated. 100% viscose drawing slivers of three different counts (3.94 ktex, 3.19 ktex and 2.68 ktex) were spun into yarns with a count of 14.76 tex while keeping all other spinning conditions constant. The yarn samples were evaluated on the basis of yarn irregularity and imperfections, as well as hairiness and tensile properties. In addition, a 3rd passage draw frame sliver with a yarn count of 3.19 ktex was spun into yarns of 14.76 tex using two different delivery speeds: 350 and 400 m/min. The significance of independent variables and their interactions for the physical properties of the yarn were tested statistically at a 95% level of confidence.
PL
Do badań wybrano taśmy z włókien wiskozowych o trzech masach liniowych: 3,94 ktex, 3,19 ktex, 2,68 ktex wytwarzając przędze o masie liniowej 14,76 tex. Wytworzone próbki badano analizując ich nierównomierność, ilość zgrubień pocienień i nopów oraz włochatość. Dodatkowo zastosowano trzeci stopień rozciągu dla wyprzędzenia z taśmy 3,19 ktex przędzy o masie liniowej 14,76 tex stosując dwie prędkości zasilania: 350 m/min i 400 m/min. Wpływ poszczególnych parametrów procesu badano statystycznie na poziomie ufności 95%.
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