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Brine Recycling from Industrial Textile Wastewater Treated by Ozone. By-Products Accumulation. Part 2: Scaling-Up

机译:由臭氧处理的工业纺织废水中的盐水回收。副产品积累。第2部分:缩放

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摘要

Extremely high volumes of salty wastewater are produced by textile manufacturers daily. Therefore, brine recycling from the wastewater should be regarded as a crucial issue within the textile industry. Ozonation was used in this two-part study as a purification method for industrial textile wastewater polluted by low-molecular-weight salts (LMWS). Part 1 revealed the accumulation of ozonation by-products in a multi-recycling system. The objective of Part 2 was the scaling-up of the process and the investigation of the occurrence of by-products. It was found that ozonation works well in an alkaline reaction medium, which was characteristic of the wastewater from a dye house; an almost complete color removal was achieved within 30 min of treatment. The brine that was produced from the wastewater treated by ozonation in a 20 L bubble column reactor was recycled successfully. Dyeing of cotton with five types of reactive dyes in various shades resulted in very good values of DECMC, which is the normative color matching parameter, and were between 0.15 and 1.2. The color fastness obtained for upcycled fabrics were satisfactory, and not worse than standard values. Although accumulation of the side products was detected in Part 1, the fabric discharges produced in the scaled-up process were free from carcinogenic amines and heavy metals. The study indicated that ozonation can be applied in the industry as a method for textile wastewater recycling.
机译:极高的盐水废水由纺织制造商每天生产。因此,废水中的盐水应被视为纺织业内的一个至关重要的问题。在该两部分研究中使用臭氧处理作为由低分子量盐(LMW)污染的工业纺织废水的纯化方法。第1部分揭示了多回收系统中臭氧化副产品的积累。第2部分的目标是对过程的扩大和调查副产物的发生。发现臭氧处理良好在碱性反应介质中良好,这是来自染料房屋废水的特征;在30分钟内实现几乎完全的颜色去除。通过在20L气泡柱反应器中通过臭氧处理处理的废水中产生的盐水成功再循环。各种色调中具有五种类型的反应性染料的棉花染色导致DECMC的非常好的DECMC值,这是规范性颜色匹配参数,均为0.15和1.2。为上循环织物获得的色牢度令人满意,而不是比标准值更差。尽管在第1部分中检测到侧面产品的积聚,但是在缩放过程中产生的织物放电不含致癌胺和重金属。该研究表明,臭氧化物可以应用于工业中作为纺织废水再循环的方法。

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