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一对活力组合的亮相:水力空化与冷等离子体用于降解废水中的速尿

The unveiling of a dynamic duo: hydrodynamic cavitation and cold plasma for the degradation of furosemide in wastewater.

作者信息

Verdini Federico, Abramova Anna, Boffa Luisa, Calcio Gaudino Emanuela, Cravotto Giancarlo

机构信息

Dipartimento di Scienza e Tecnologia del Farmaco, University of Turin, Via Giuria 9, 10125, Turin, Italy.

Kurnakov Institute of General and Inorganic Chemistry of the Russian Academy of Sciences, Leninsky Prospekt 31, Moscow, Russia, 119991.

出版信息

Sci Rep. 2024 Mar 21;14(1):6805. doi: 10.1038/s41598-024-57038-6.

Abstract

The degradation in water of furosemide (FUR), a widely used diuretic drug, was herein reported. The method entails an integrated approach based on the hybridisation of hydrodynamic cavitation (HC) with electrical discharge (ED) plasma technology. This dynamic duo could increase the production of oxidising compounds in water, in particular hydroxyl radicals (OH radicals), by triggering the rapid homolytic decomposition of water molecules and avoiding the addition of external oxidants. This study clearly emphasises the effectiveness of an integrated approach to improve the degradation of pollutants in wastewater originating from active pharmaceutical ingredients (APIs). The results of HC/ED-assisted FUR degradation in the presence of radical scavengers highlight the predominant role of the radical oxidation mechanism at the gas-liquid interface of the cavitation bubble during HC/ED treatment. A comparative analysis of the three technologies-HC alone, HC/ED and UV alone-emphasised the promising potential of hybrid HC/ED as a scalable industrial technology. This is demonstrated by the higher degradation rates (100%, 10 min) when treating large volumes (5L) of wastewater contaminated with FUR (50 mg/L), even in the presence of other APIs.

摘要

本文报道了广泛使用的利尿药速尿(FUR)在水中的降解情况。该方法采用了一种基于水力空化(HC)与放电(ED)等离子体技术相结合的综合方法。这种动态组合通过引发水分子的快速均裂分解并避免添加外部氧化剂,能够增加水中氧化化合物的产生,特别是羟基自由基(OH自由基)。本研究明确强调了一种综合方法对于改善源自活性药物成分(API)的废水中污染物降解的有效性。在自由基清除剂存在的情况下,HC/ED辅助FUR降解的结果突出了在HC/ED处理过程中,自由基氧化机制在空化气泡气液界面的主导作用。对单独的HC、HC/ED和单独的UV这三种技术的比较分析强调了混合HC/ED作为一种可扩展工业技术的潜在前景。这在处理大量(5L)受FUR(50mg/L)污染的废水时表现为更高的降解率(100%,10分钟),即使存在其他API也是如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a60f/10957998/4698ecdbb233/41598_2024_57038_Fig1_HTML.jpg

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