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减轻乙酰胺脒去除技术的毒性 - 关注铁改性沸石。

Mitigating toxicity of acetamiprid removal techniques - Fe modified zeolites in focus.

机构信息

University of Belgrade Faculty of Physical Chemistry, 11000 Belgrade, Serbia.

University of Belgrade Faculty of Physical Chemistry, 11000 Belgrade, Serbia.

出版信息

J Hazard Mater. 2022 Aug 15;436:129226. doi: 10.1016/j.jhazmat.2022.129226. Epub 2022 May 25.

DOI:10.1016/j.jhazmat.2022.129226
PMID:35739746
Abstract

All remediation pathways in aqueous solutions come down to three dominant ones - physical, chemical, and combinations thereof. Materials proposed for adsorption and oxidative degradation can induce positive or negative effects on cells compared to the pollutants themselves. Present research deals with the effects different methods for pesticide remediation have and how they impact cytotoxicity. With this particular intention, Fe-modified zeolites (obtained via citrate/oxalate complexes) of three zeotypes (MFI, BEA and FAU) were prepared and tested as adsorbents and Fenton catalysts for the removal of the acetamiprid pesticide. The materials are characterized by AFM, FTIR spectroscopy and ICP-OES. A different effect of the zeolite framework and modification route was found among the samples, which leads to pronounced adsorption (FAU), efficient Fenton degradation (MFI) or synergistic effect of both mechanisms (BEA). The cytotoxic effects of acetamiprid in the presence of zeolites, in pristine and modified forms, were tested on the MRC-5 human fibroblast cell line. A complete survey of the toxicity effect behind different pesticide removal methods is presented. Since neither adsorption nor catalytic degradation is the best option for pesticide removal, the focus is shifted to a combination of these methods, which proved to be optimal for pesticide toxicity reduction.

摘要

所有水溶液中的修复途径归结为三种主要途径 - 物理、化学和它们的组合。与污染物本身相比,用于吸附和氧化降解的材料可能会对细胞产生正或负的影响。本研究涉及不同农药修复方法的效果以及它们如何影响细胞毒性。出于这个特殊的目的,制备了三种沸石类型(MFI、BEA 和 FAU)的 Fe 改性沸石(通过柠檬酸盐/草酸盐络合物获得),并将其用作吸附剂和芬顿催化剂,以去除乙虫脒农药。通过 AFM、FTIR 光谱和 ICP-OES 对材料进行了表征。在样品中发现沸石骨架和改性途径的不同影响,这导致明显的吸附(FAU)、有效的芬顿降解(MFI)或两种机制的协同效应(BEA)。在存在沸石的情况下,以原始和改性形式,对 MRC-5 人成纤维细胞系测试了乙虫脒的细胞毒性。提出了不同农药去除方法背后的毒性效应的全面调查。由于吸附和催化降解都不是去除农药的最佳选择,因此将重点转移到这些方法的组合上,事实证明,这种组合是降低农药毒性的最佳选择。

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