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Advanced oxidation processes for the removal of cyanobacterial toxins from drinking water

机译:从饮用水中去除蓝藻毒素的先进氧化方法

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摘要

Drinking water production faces many different challenges with one of them being naturally produced cyanobacterial toxins. Since pollutants become more abundant and persistent today, conventional water treatment is often no longer sufficient to provide adequate removal. Among other emerging technologies, advanced oxidation processes (AOPs) have a great potential to appropriately tackle this issue. This review addresses the economic and health risks posed by cyanotoxins and discusses their removal from drinking water by AOPs. The current state of knowledge on AOPs and their application for cyanotoxin degradation is synthesized to provide an overview on available techniques and effects of water quality, toxin- and technique-specific parameters on their degradation efficacy. The different AOPs are compared based on their efficiency and applicability, considering economic, practical and environmental aspects and their potential to generate toxic disinfection byproducts. For future research, more relevant studies to include the degradation of less-explored cyanotoxins, toxin mixtures in actual surface water, assessment of residual toxicity and scale-up are recommended. Since actual surface water most likely contains more than just cyanotoxins, a multi-barrier approach consisting of a series of different physical, biological and chemical—especially oxidative—treatment steps is inevitable to ensure safe and high-quality drinking water.
机译:饮用水生产面临着许多不同的挑战,其中一个是天然产生的蓝藻毒素。由于今天污染物变得更加丰富,因此常规的水处理通常不再足以提供充分的去除。在其他新兴技术中,高级氧化过程(AOP)有很大的潜力,可以适当地解决这个问题。该审查涉及氰毒素造成的经济和健康风险,并讨论了武器从饮用水中的去除。合成了关于AOP的目前关于AOP的施用及其对氰毒素降解的应用,以概述提供水质,毒素和技术特异性参数对其降解疗效的可用技术和影响。根据其效率和适用性,考虑到经济,实际和环境方面及其潜力来比较不同的AOP,以及产生毒性消毒副产品的潜力。对于未来的研究,更多相关的研究包括降解较少探索的氰霉素,毒素混合物在实际地表水中,建议评估残留毒性和扩展。由于实际水域最有可能含有含量不仅仅是氰毒素,这是一种多屏障方法,包括一系列不同的物理,生物和化学 - 尤其是氧化处理步骤是不可避免的,以确保安全和高质量的饮用水。

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