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Azo dyes: past, present and the future

机译:偶氮染料:过去,现在和未来

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Dyes have a long history and constitute an important component in our daily lives. The dye industry began by usingnatural plant and insect sources, and then rapidly turned to synthetic manufacturing processes. Unfortunately, several ofthe synthetic dyes, especially azo dyes, have been found to be toxic and mutagenic, and are banned throughout the world.However, because of their low cost and other desirable properties, the use and manufacture of azo dyes continues even today.Removal and treatment of azo dyes from wastewater presents a very special challenge. Since azo dyes are recalcitrantto the conventional aerobic biological treatment, and physical/chemical treatment processes are neither ecofriendly nor economical,innovative remediation approaches need to be explored. In the current scenario, a combination of biological andadvanced oxidation processes seem to be the most desired solution. Moreover, mechanistic studies of the pathways and enzymesinvolved in dye degradation and detoxification need to be undertaken for process optimization. This paper criticallyand comprehensively reviews recent research advances and the knowledge-base of the previously mentioned areas, includinghistory and chemistry of dyes, mechanistic studies on their persistence, ecotoxicity, and carcinogenicity, and potential remediationmethods. Particular emphasis has been given towards critical evaluation of the existing dye wastewater treatmentmethods and their full-scale applications; based on which recommendations have been made for future developments of thetreatment technologies and their assessment methods. In the Authors' opinion, a more holistic and large-scale approach is requiredto tackle the chronic problem of dye pollution.
机译:染料历史悠久,是我们日常生活的重要组成部分。染料工业开始时使用天然植物和昆虫资源,然后迅速转向合成制造工艺。不幸的是,已经发现几种合成染料,特别是偶氮染料具有毒性和诱变性,并且在全世界范围内被禁止使用。但是,由于它们的低成本和其他理想的性能,偶氮染料的使用和制造一直持续到今天。从废水中去除和处理偶氮染料是一个非常特殊的挑战。由于偶氮染料不适合常规的好氧生物处理,并且物理/化学处理工艺既不环保也不经济,因此需要探索创新的修复方法。在当前情况下,生物和高级氧化过程的结合似乎是最理想的解决方案。此外,为了进行工艺优化,需要对涉及染料降解和解毒的途径和酶进行机理研究。本文对上述领域的最新研究进展和知识基础进行了批判性和全面的综述,包括染料的历史和化学,其持久性,生态毒性和致癌性的机理研究以及潜在的修复方法。特别强调了对现有染料废水处理方法及其全面应用的严格评估;根据这些建议,为治疗技术及其评估方法的未来发展提出了建议。作者认为,需要更全面和大规模的方法来解决染料污染的长期问题。

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