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Chronic toxicity of treated and untreated aqueous solutions containing imidazole-based ionic liquids and their oxydized by-products

机译:含咪唑类离子液体及其氧化副产物的已处理和未处理水溶液的慢性毒性

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摘要

In the present work, an experimental study is presented aimed at assessing the chronic toxicity of three imidazole-based ionic liquids, i.e. imidazole (IM), 1-methylimidazole (1MIM), 1-ethyl-3-methyl-imidazolium chloride (1E3MIM), and 1-butyl-3-methyl-imidazolium chloride (1B3MIM), generally considered as environmentally friendly surrogates of traditional industrial solvents. In this study Daphnia magna was used as test organism due to its wide application in the ecotoxicological literature of ionic liquids, monitoring both the cumulative survival of exposed organisms, and their reproductive parameters. The intracellular oxidative stress of daphnids was also assessed through the determination of Reactive Oxygen Species (ROS) and Catalase activity (CAT). The chronic toxicity of their oxidized by-products (BPs), generated by advanced oxidation treatment with UV254/H2O2, was finally evaluated. Four generations of BPs were considered, each formed at reaction times higher than those required for the complete removal of the parent compounds. Results indicate that IM and 1MIM have a moderate chronic toxicity, which mainly affects reproductive parameters. On the contrary, 1E3MIM and 1B3MIM showed significantly higher chronic toxicity effects resulting in a significant increase in the mortality of exposed organisms compared to the controls. UV/H2O2 treatment of the compounds did not always reduce the observed effects, since the generated BPs have, in some cases, higher chronic toxicity than their corresponding parent compounds. Chronic toxic effects remained significant up to the fourth generation of BPs in the cases of 1E3MIM and 1B3MIM, whereas they were found to be negligible from the second generation of BPs in the case of IM and 1MIM. The results of oxidative stress measurements confirmed the previous findings, suggesting a potential risk for the aquatic ecosystem induced by the mentioned compounds and their BPs.
机译:在目前的工作中,进行了一项旨在评估三种基于咪唑的离子液体(即咪唑(IM),1-甲基咪唑(1MIM),1-乙基-3-甲基咪唑鎓氯化物(1E3MIM))的慢性毒性的实验研究。以及1-丁基-3-甲基咪唑鎓氯化物(1B3MIM),通常被视为传统工业溶剂的环保替代品。在这项研究中,由于大型蚤(Daphnia magna)在离子液体的生态毒理学文献中得到广泛应用,因此它被用作测试生物,可监测暴露生物的累积存活及其繁殖参数。还通过测定活性氧(ROS)和过氧化氢酶活性(CAT)评估了蚤的细胞内氧化应激。最后评估了用UV254 / H2O2进行高级氧化处理产生的氧化副产物(BPs)的慢性毒性。考虑了四代BP,每个BP的反应时间都比完全除去母体化合物所需的反应时间高。结果表明,IM和1MIM具有中等程度的慢性毒性,主要影响生殖参数。相反,与对照相比,1E3MIM和1B3MIM显示出明显更高的慢性毒性作用,导致暴露生物的死亡率显着增加。化合物的UV / H2O2处理并不总是会降低观察到的效果,因为在某些情况下,生成的BP比其相应的母体化合物具有更高的慢性毒性。在1E3MIM和1B3MIM的情况下,直到第四代BP的慢性毒性作用仍然很明显,而在IM和1MIM的情况下,从第二代BP来看,它们的毒性可忽略不计。氧化应激测量的结果证实了先前的发现,表明上述化合物及其BP对水生生态系统的潜在风险。

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