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An Approach to Estimate Dye Concentration of Domestic Washing Machine Wastewater

机译:估算家用洗衣机废水染料浓度的方法

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This article focuses on developing a methodology which can be used to estimate the concentration of dyestuff released from textiles during domestic laundering, so that further studies involving decolorization of the wastewater from domestic washing machine can be conducted in an attempt to develop eco-friendly domestic washing processes. Due to the complexity of the problem, an approach was adopted so that, as an initial step, synthetic red and blue reactive dye solutions were prepared as representative wastewater solutions using Reactive Red 195 and Reactive Blue 19 dyestuffs for the estimation of dye concentration. This was followed by an experimental work consisting of washing tests involving the calculation of dye concentration in the wastewater obtained from domestic washing machine as well as tergotometer as a machine simulator. For this part of the work, dyed cotton plain jersey fabric samples were used to obtain wastewater solutions. All the dye solutions and the wastewater samples were measured with VIS spectrophotometer, and the maximum absorbance values were obtained at relevant wavelengths. Although the characteristics of absorbance spectra of synthetic and wastewater solutions were very different, the maximum absorbance values of both solutions overlapped at relevant wavelengths. The concentration of the dyestuff was calculated from the absorbance values measured at 540 and 592 nm for the red and blue, respectively. The statistical analysis of the data suggested that tergotometer can be used as a domestic washing machine simulator. Moreover, the regression analysis done for the dyestuff concentration under discussion revealed that the most significant factor was the washing step (main wash or rinsing) (89.5%) followed by color (red or blue) (3.4%) and washing device (washing machine or tergotometer) (1.5%).
机译:本文侧重于开发一种方法,该方法可用于估算在国内洗涤过程中纺织品释放的染料浓度,从而可以进行从家用洗衣机脱离废水脱色的进一步研究,以发展环保家庭洗涤流程。由于该问题的复杂性,采用了一种方法,使得作为初始步骤,用反应性红色195和活性蓝19染料制备合成红色和蓝色活性染料溶液,以估计染料浓度。随后是一种实验性,包括洗涤试验,涉及从家用洗衣机获得的废水中的染料浓度以及作为机器模拟器的TergoTometer计算的染料浓度。在这部分工作中,使用染色的棉花平纹织物样品来获得废水溶液。用VIS分光光度计测量所有染料溶液和废水样品,在相关波长下获得最大吸光度值。虽然合成和废水溶液吸光光谱的特性非常不同,但两种溶液的最大吸光度值在相关波长上重叠。从540和592nm测量的红色和蓝色测量的吸光度值,分别计算染料的浓度。数据的统计分析表明,TergoTometer可用作家用洗衣机模拟器。此外,讨论染料浓度的回归分析表明,最显着的因素是洗涤步骤(主洗涤或漂洗)(89.5%),然后是颜色(红色或蓝色)(3.4%)和洗涤装置(洗衣机或tergoTometer)(1.5%)。

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