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首页> 外文期刊>Journal of Environmental Engineering >Comparison of the Efficiency of Adsorption, Ozonation, and Ozone/Activated Carbon Coupling for the Removal of Pharmaceuticals from Water
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Comparison of the Efficiency of Adsorption, Ozonation, and Ozone/Activated Carbon Coupling for the Removal of Pharmaceuticals from Water

机译:吸附,臭氧化和臭氧/活性炭偶联去除水中药物的效率比较

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The treatment by adsorption on activated carbon, ozonation, and ozone/activated carbon coupling of a solution containing six pharmaceutical compounds (metoprolol, carbamazepine, terbutaline, fluoxetine, and sulfamethoxazole) chosen among different pharmaceutical classes has been investigated. The efficiency of the processes was estimated through the removal of each target pollutant and the evolution of both toxicity (inhibition of Vibrio fisheri bioluminescence) and the total organic carbon concentration. The influence of pH, ranging from 3 to 7, on the process efficiency was also studied. In each experimental condition, the fastest removal of the pharmaceutical compounds was achieved with ozone/activated carbon coupling. Nevertheless, this process (ozonation and ozone/activated carbon coupling) leads to the formation of toxic by-products that significantly increase the toxicity of the treated effluent. Their removal would require extending the treatment time or increasing the ozone concentration, which increases the treatment costs. Based on the experimental results in these experimental conditions and the toxicity evolution in the liquid phase, the adsorption on activated carbon seems to be the most efficient and the safest process to remove pharmaceutical compounds from water. (C) 2015 American Society of Civil Engineers.
机译:已经研究了通过在不同药物类别中选择的包含六种药物化合物(美托洛尔,卡马西平,特布他林,氟西汀和磺胺甲恶唑)的溶液在活性炭上吸附,臭氧化和臭氧/活性炭偶合的处理方法。通过去除每种目标污染物以及毒性(抑制费氏弧菌生物发光)和总有机碳浓度的演变来估算过程的效率。还研究了pH值(从3到7)对工艺效率的影响。在每个实验条件下,通过臭氧/活性炭偶合可以最快地除去药物化合物。然而,该过程(臭氧化和臭氧/活性炭偶合)导致形成有毒副产物,大大增加了处理后废水的毒性。去除它们将需要延长处理时间或增加臭氧浓度,这增加了处理成本。根据在这些实验条件下的实验结果以及液相中的毒性演变,在活性炭上的吸附似乎是从水中去除药物化合物的最有效,最安全的过程。 (C)2015年美国土木工程师学会。

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