Adsorption behavior of crude oil hydrocarbons on polyethylene microplastics in batch experiments

IF 4.9 3区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Marine pollution bulletin Pub Date : 2025-06-01 Epub Date: 2025-03-19 DOI:10.1016/j.marpolbul.2025.117832
Farah Ali Ahmad, Darine A. Salam
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Abstract

This study examines the impact of microplastics on the fate of spilled crude oil in water. Batch adsorption experiments were conducted using polyethylene microplastics ranging in size between 300 and 600 μm. Environmentally relevant concentrations of crude oil and microplastics were tested. Samples processing involved liquid-liquid extraction (LLE) followed by quantitative analysis using Gas-Chromatography coupled to Mass Spectrometry. Kinetic analyses employed the most commonly used models in microplastic adsorption studies, including the pseudo-first order, pseudo second-order, Elovich, and intra-particle diffusion models. Results mainly conformed to the Elovich model, followed by the pseudo-second order model, suggesting chemisorption. Isotherm evaluations involved the Langmuir, Freundlich, Temkin, and Dubinin-Radushkevich models, selected for their effectiveness in describing the behavior of microplastics in adsorption studies. These models revealed diverse behaviors: alkanes from nC11-nC21 conformed to the Freundlich isotherm, suggesting multilayer adsorption. While nC10, nC27-nC29, nC33, and nC34 were best described by the Langmuir model, and nC22-nC26 and nC30-nC32 adhered to the Temkin model, both indicative of monolayer adsorption. Notably, nC35 adsorption was best described by the Dubinin-Radushkevich model. The different PAHs exhibited preferences for either the Freundlich or the Langmuir model. The maximum adsorption capacities of the contaminants onto polyethylene were 263.12 and 101.57 mg.g‐1 for the targeted alkanes and PAHs, respectively, corresponding to a maximum adsorption of 5.75 mg of targeted hydrocarbons per m2 of polyethylene. The study highlighted the potential role of microplastics in influencing the environmental fate of selected crude oil hydrocarbons and provided insights into their interaction and partitioning behavior in water.

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原油碳氢化合物在聚乙烯微塑料上的吸附行为
这项研究考察了微塑料对水中泄漏原油命运的影响。采用300 ~ 600 μm的聚乙烯微塑料进行了批量吸附实验。对原油和微塑料的环境相关浓度进行了测试。样品处理包括液液萃取(LLE),然后使用气相色谱-质谱联用进行定量分析。动力学分析采用了微塑料吸附研究中最常用的模型,包括伪一级模型、伪二级模型、Elovich模型和颗粒内扩散模型。结果主要符合Elovich模型,其次是伪二阶模型,表明存在化学吸附。等温线评估包括Langmuir、Freundlich、Temkin和Dubinin-Radushkevich模型,选择这些模型是因为它们在吸附研究中描述微塑料行为的有效性。这些模型揭示了不同的行为:nC11-nC21的烷烃符合Freundlich等温线,表明多层吸附。nC10、nC27-nC29、nC33和nC34最符合Langmuir模型,nC22-nC26和nC30-nC32符合Temkin模型,均为单层吸附。值得注意的是,用Dubinin-Radushkevich模型最能描述nC35的吸附。不同的多环芳烃表现出对Freundlich模型或Langmuir模型的偏好。聚乙烯对污染物的最大吸附量分别为263.12和101.57 mg。目标烷烃和多环芳烃分别为g-1,对应于每平方米聚乙烯最大吸附5.75毫克目标碳氢化合物。该研究强调了微塑料在影响选定原油碳氢化合物的环境命运方面的潜在作用,并提供了它们在水中相互作用和分配行为的见解。
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来源期刊
Marine pollution bulletin
Marine pollution bulletin 环境科学-海洋与淡水生物学
CiteScore
10.20
自引率
15.50%
发文量
1077
审稿时长
68 days
期刊介绍: Marine Pollution Bulletin is concerned with the rational use of maritime and marine resources in estuaries, the seas and oceans, as well as with documenting marine pollution and introducing new forms of measurement and analysis. A wide range of topics are discussed as news, comment, reviews and research reports, not only on effluent disposal and pollution control, but also on the management, economic aspects and protection of the marine environment in general.
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