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Activated carbon for the removal of pharmaceutical residues from treated wastewater

机译:活性炭用于去除处理后废水中的药物残留

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Pharmaceutical residues, which pass naturally through the human body into sewage, are in many cases virtually unaffected by conventional wastewater treatment. Accumulated in the environment, however, they can significantly impact aquatic life. The present study indicates that many pharmaceutical residues found in wastewater can be removed with activated carbon in a cost-efficient system that delivers higher resource utilisation and security than other carbon systems. The experiment revealed a substantial separation of the analysed compounds, notwithstanding their relatively high solubility in water and dissimilar chemical structures. This implies that beds of activated carbon may be a competitive alternative to treatment with ozone. The effluent water used for the tests, performed over 20 months, originated from Stockholm's largest sewage treatment plant. Passing through a number of different filters with activated carbon removed 90-98% of the pharmaceutical residues from the water. This paper describes pilot-scale tests performed by IVL and the implications for an actual treatment plant that has to treat up to several thousand litres of wastewater per second. In addition, the advantages, disadvantages and costs of the method are discussed. This includes, for example, the clogging of carbon filters and the associated hydraulic capacity limits of the activated carbon.
机译:天然通过人体进入污水的药物残留物在许多情况下几乎不受常规废水处理的影响。但是,它们在环境中积累会严重影响水生生物。本研究表明,在具有成本效益的系统中,可以用活性炭去除废水中发现的许多药物残留物,该系统比其他碳系统具有更高的资源利用率和安全性。实验表明,尽管所分析的化合物在水中的溶解度较高且化学结构不同,但仍能将其分离出来。这意味着活性炭床可以替代臭氧处理。测试所用的废水来自斯德哥尔摩最大的污水处理厂,历时20个月。通过许多带有活性炭的过滤器,从水中去除了90-98%的药物残留。本文介绍了IVL进行的中试规模测试,以及对每秒处理多达数千升废水的实际处理厂的影响。另外,讨论了该方法的优点,缺点和成本。例如,这包括碳过滤器的堵塞和活性炭的相关液压容量极限。

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