微纳米塑料介导的含氟液晶单体在水生环境中的光转化和生物可及性

IF 5.8 2区 环境科学与生态学 Q1 CHEMISTRY, MULTIDISCIPLINARY Environmental Science: Nano Pub Date : 2024-12-10 DOI:10.1039/D4EN00723A
Yiping Feng, Jingyi Wu, Wenhao Lao, Weibiao Ye, Danni Guo, Zhu Wang, Xiaowei Wu and Racliffe Weng Seng Lai
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引用次数: 0

摘要

微塑料和纳米塑料是一种新兴的污染物,由于其在水生环境中具有聚集和运输共存有机污染物的潜力而引起了人们的广泛关注。氟化液晶单体(flcm)也已成为令人关注的污染物,因为它们经常出现,具有潜在的毒性,并且容易与环境中的塑料共存。然而,塑料对flcm的环境命运的影响尚不清楚。为了解决这一知识空白,我们研究了一种关键的FLCM, 4-氰基-3-氟苯基- 4-乙基苯甲酸酯(CEB-F)在三种常见塑料上的积累,并研究了纳米塑料对CEB-F光转化的影响及其对大水蚤(d.m agna)的急性毒性。研究结果表明,CEB-F在不同塑料材料上的吸附量顺序为:聚苯乙烯(PS) <;混合纤维素酯;聚酰胺(PA)。CEB-F在三种塑料上的吸附过程更符合拟一级动力学模型和Langmuir等温线模型,表明吸附主要受物理扩散控制。理论计算表明,CEB-F在PS塑料上的吸附主要由疏水相互作用驱动。此外,PS纳米塑料(PSNPs)显著增强了CEB-F的紫外降解,但降解中间体的类型没有发生实质性变化,表明对降解过程和机制的影响有限。急性毒性试验表明,PSNPs在较低浓度下增加了CEB-F对D. magna的毒性,而在较高浓度下降低了毒性。这些发现对于揭示天然水体中flcm的塑料介导的环境命运和水生毒性具有重要意义。
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Micro- and nanoplastic-mediated phototransformation and bioaccessibility of fluorinated liquid crystal monomer in aquatic environments†

Micro- and nanoplastics are emerging pollutants that have attracted significant attention due to their potential to concentrate and transport coexisting organic pollutants in aquatic environments. Fluorinated liquid-crystal monomers (FLCMs) have also emerged as contaminants of concern, given their frequent occurrence, potential toxic effects, and propensity to co-occur with plastics in the environment. However, the influence of plastics on the environmental fate of FLCMs remains unclear yet. To address this knowledge gap, we investigated the accumulation of a key FLCM, 4-cyano-3-fluorophenyl 4-ethylbenzoate (CEB-F), on three common plastics, and examined the effects of nanoplastics on the phototransformation of CEB-F and its acute toxicity to Daphnia magna (D. magna). Our findings revealed that the adsorption capacity of CEB-F on different plastic materials followed the order: polystyrene (PS) < mixed cellulose ester (MCE) < polyamide (PA). The adsorption processes of CEB-F on the three plastics aligned more closely with the pseudo-first-order kinetic model and the Langmuir isotherm model, suggesting that the adsorption is primarily governed by physical diffusion. Theoretical calculations indicated that the adsorption of CEB-F on PS plastics is mainly driven by hydrophobic interactions. Additionally, PS nanoplastics (PSNPs) significantly enhanced the UV degradation of CEB-F, although the types of degradation intermediates did not change substantially, suggesting a limited impact on the degradation process and mechanism. Acute toxicity tests showed that PSNPs increased the toxicity of CEB-F to D. magna at lower concentrations, while the toxicity was reduced at higher concentrations. The obtained findings are of great significance to unraveling the plastic-mediated environmental fate and aquatic toxicity of FLCMs in natural waters.

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来源期刊
Environmental Science: Nano
Environmental Science: Nano CHEMISTRY, MULTIDISCIPLINARY-ENVIRONMENTAL SCIENCES
CiteScore
12.20
自引率
5.50%
发文量
290
审稿时长
2.1 months
期刊介绍: Environmental Science: Nano serves as a comprehensive and high-impact peer-reviewed source of information on the design and demonstration of engineered nanomaterials for environment-based applications. It also covers the interactions between engineered, natural, and incidental nanomaterials with biological and environmental systems. This scope includes, but is not limited to, the following topic areas: Novel nanomaterial-based applications for water, air, soil, food, and energy sustainability Nanomaterial interactions with biological systems and nanotoxicology Environmental fate, reactivity, and transformations of nanoscale materials Nanoscale processes in the environment Sustainable nanotechnology including rational nanomaterial design, life cycle assessment, risk/benefit analysis
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