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表面活性剂混合物对细菌和海洋微藻的拮抗毒性作用

Antagonistic Toxic Effects of Surfactants Mixtures to Bacteria and Marine Microalgae .

作者信息

Ríos Francisco, Lechuga Manuela, Lobato-Guarnido Ismael, Fernández-Serrano Mercedes

机构信息

Department of Chemical Engineering, Faculty of Sciences, University of Granada, Campus Fuente Nueva s/n, 18071 Granada, Spain.

出版信息

Toxics. 2023 Apr 5;11(4):344. doi: 10.3390/toxics11040344.

Abstract

Surfactants can be found in an ever-widening variety of products and applications, in which the combination of several types of surfactants is used to reinforce their properties, looking for synergistic effects between them. After use, they tend to be discarded into wastewater, ending up in aquatic bodies with concerning harmful and toxic effects. The aim of this study is the toxicological assessment of three anionic surfactants (ether carboxylic derivative, EC) and three amphoteric surfactants (amine-oxide-based, AO), individually and in binary mixtures of them (1:1 /), to bacteria and marine microalgae . Critical Micelle Concentration (CMC) was determined to demonstrate the capacity to reduce surface tension and the toxicity of the surfactants and mixtures. Zeta potential (ζ-potential) and micelle diameter (MD) were also determined to confirm the formation of mixed surfactant micelles. The Model of Toxic Units (MTUs) was used to quantify the interactions of surfactants in binary mixtures and to predict if the concentration addition or response addition principle can be assumed for each mixture. The results showed a higher sensitivity of microalgae to the surfactants tested and their mixtures than bacteria . Antagonism toxic effects have been detected in the mixture of EC + AO and in one binary mixture of different AOs; this is to say, the mixtures showed lower toxicity than expected.

摘要

表面活性剂存在于越来越多的产品和应用中,其中几种类型的表面活性剂组合使用以增强其性能,寻求它们之间的协同效应。使用后,它们往往被排放到废水中,最终进入水体,产生有害和有毒影响。本研究的目的是对三种阴离子表面活性剂(醚羧酸衍生物,EC)和三种两性表面活性剂(氧化胺基,AO)分别及其二元混合物(1:1)对细菌和海洋微藻进行毒理学评估。测定临界胶束浓度(CMC)以证明降低表面张力的能力以及表面活性剂和混合物的毒性。还测定了zeta电位(ζ-电位)和胶束直径(MD)以确认混合表面活性剂胶束的形成。使用毒性单位模型(MTUs)来量化二元混合物中表面活性剂的相互作用,并预测每种混合物是否可以假定浓度加和或反应加和原则。结果表明,微藻对所测试的表面活性剂及其混合物的敏感性高于细菌。在EC + AO混合物和一种不同AO的二元混合物中检测到拮抗毒性作用;也就是说,混合物的毒性低于预期。

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