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Toxicity and antimicrobial activity of imidazolium and pyridinium ionic liquids

机译:咪唑鎓和吡啶鎓离子液体的毒性和抗菌活性

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Ionic liquids (ILs) are novel organic salts with a wide liquid range that have enormous potential for industrial use as "green" chemicals.Varying the cationic and anionic components can alter IL properties and toxicities.Before the likely industrial release of ILs into the environment,it is necessary to determine their toxic and antimicrobial properties.As a measure of microbial toxicity of imidazolium and pyridinium ILs with varying alkyl chain lengths,we investigated Vibrio fischeri using the Microtox method.An increase in alkyl group chain length as well as an increase in the number of alkyl groups substituted on the cation ring corresponded with an increase in toxicity.Varying the anion identity did not significantly alter toxicity.We then examined the antimicrobial effects of 1000 ppm of butyl-,hexyl- and octyl- imidazolium and pyridinium bromide ILs on the growth of a group of microorganisms representing a variety of physiological and respiratory capabilities.In general,hexyl- and octyl- imidazolium and pyridinium bromides had significant antimicrobial activity to pure cultures of Escherichia coli,Staphylococcus aureus.Bacillus subtilis,Pseudomonas fluorescens and Saccharomyces cerevisiae.Butyl-imidazolium and pyridinium bromides were less antimicrobial than ILs with longer alkyl chain lengths to all microorganisms examined.However,the most significant antimicrobial activity was observed in tests with B.subtilis.This research provides toxicity and antimicrobial information about ILs,prior to their widespread use and release.This type of proactive approach can aid in the prevention of pollution,and avoid costs of future clean-up,and provide information about the "green" nature of practical industrial solvents.
机译:离子液体(ILs)是一种新型的有机盐,具有广泛的液体范围,在工业上具有作为“绿色”化学品的巨大潜力。改变阳离子和阴离子成分会改变IL的性质和毒性。在将ILs工业释放到环境中之前为了测定咪唑鎓和吡啶鎓ILs烷基链长度不同的微生物毒性,我们使用Microtox方法研究了费氏弧菌。烷基链长度的增加和增加阳离子环上取代的烷基数目的增加与毒性的增加相对应。改变阴离子的身份并没有明显改变毒性。然后我们研究了1000 ppm的丁基,己基和辛基咪唑鎓和吡啶鎓溴化物的抗菌作用ILs代表一组具有多种生理和呼吸功能的微生物的生长。 d-辛基咪唑鎓和吡啶鎓溴化物对大肠杆菌,金黄色葡萄球菌,枯草芽孢杆菌,荧光假单胞菌和酿酒酵母的纯培养物具有显着的抗菌活性。与所有微生物相比,丁基咪唑鎓和吡啶鎓溴化物对微生物的长度要短但是,在枯草芽孢杆菌的测试中观察到了最显着的抗菌活性。这项研究提供了有关IL的毒性和抗菌信息,以及它们的广泛使用和释放。这种主动方法可以帮助预防污染,避免未来清理的费用,并提供有关实用工业溶剂的“绿色”性质的信息。

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