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Removal of Reactive Dyes in Textile Effluents by Catalytic Ozonation Pursuing on-Site Effluent Recycling

机译:现场废水回收利用催化臭氧化处理去除纺织品废水中的活性染料

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摘要

The textile wash-off process consumes substantial amounts of water, which generates large volumes of wastewater that pose potential pollution issues for the environment. In the present study, catalytic ozonation was applied to degrade residual dyes present in rinsing effluents from wash-off processes towards the aim of recycling the waste effluents. A magnetic catalyst was prepared for promoting dye degradation by catalytic ozonation. Via a hydrothermal reaction, highly magnetic manganese ferrite (MnFe2O4) particles were successfully loaded on carbon aerogel (CA) materials (MnFe2O4@CA). The results showed that the developed catalyst strikingly promoted the degradation of dye contaminants by catalytic ozonation, in terms of color removal and reduction of chemical oxidation demand (COD) in rinsing effluents. COD removal efficiency in catalytic ozonation was enhanced by 25% when compared with that achieved by ozonation alone under the same treatment conditions. Moreover, we confirmed that after catalytic ozonation, the rinsing effluents could be recycled to replace fresh water without any evident compromise in the color quality of fabrics. The color difference (ΔEcmc(2:1)) between fabrics treated with recycled effluents and water was not more than 1.0, suggesting that the fabrics treated with recycled effluents displayed acceptable color reproducibility. Although colorfastness and color evenness of fabrics treated with recycled effluents were slightly poorer than those of fabrics treated with water, they were still within the acceptable tolerance. Therefore, the present study validated that catalytic ozonation was a promising technology for saving water and wastewater elimination in textile dyeing. It provides a feasibility assessment of catalytic ozonation for recycling waste effluents to reduce water dependence in textile production. Furthermore, we show a new perspective in on-site recycling waste effluents by catalytic ozonation and enrich the knowledge on feasible approaches for water management in textile production.
机译:纺织品清洗过程会消耗大量的水,这会产生大量废水,对环境构成潜在的污染问题。在本研究中,催化臭氧化技术被用于降解冲洗过程中漂洗废水中存在的残留染料,以达到回收废水的目的。制备了磁性催化剂以通过催化臭氧化促进染料降解。通过水热反应,高磁性锰铁氧体(MnFe2O4)颗粒成功地负载在碳气凝胶(CA)材料(MnFe2O4 @ CA)上。结果表明,从显色去除和减少冲洗废水中的化学需氧量(COD)方面来看,开发的催化剂通过催化臭氧化显着促进了染料污染物的降解。与在相同处理条件下单独进行臭氧氧化相比,催化臭氧氧化中的COD去除效率提高了25%。此外,我们证实,催化臭氧化后,漂洗废水可以循环使用以代替淡水,而不会显着损害织物的颜色质量。经再生废水处理的织物与水之间的色差(ΔEcmc(2:1))不大于1.0,表明经再生废水处理的织物显示出可接受的颜色再现性。尽管用再生废水处理的织物的色牢度和色均匀度比用水处理的织物稍差,但它们仍在可接受的公差范围内。因此,本研究证实了催化臭氧化技术是一种在纺织品染色中节省水和废水的有前途的技术。它提供了一种催化臭氧化技术,用于回收废水,以减少纺织品生产中的水依赖性,从而进行可行性评估。此外,我们通过催化臭氧化技术在现场回收废水中显示了新的视角,并丰富了纺织品生产中水管理可行方法的知识。

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