Activated Persulfate Oxidation as Pretreatment for Quantification of Microplastics in Natural Water

IF 7.4 Q1 ENGINEERING, ENVIRONMENTAL
Yunjeong Lee, Jeehyun Chung, Jiyoon Cho, Jiyun Han, Alim Jang, Hye-Jin Lee, Seok Won Hong* and Changha Lee*, 
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引用次数: 0

Abstract

The detrimental impact of microplastics (MPs) in natural water on human health and the environment has directed considerable attention toward the development of the corresponding quantification methods. However, the accurate quantification of MPs in natural water requires a meticulous sample pretreatment to distinguish them from other particulates. To address this need, we developed a rapid and simple pretreatment procedure based on heat- and base-activated persulfate oxidation, coupled with fluorescence microscopy. The pretreatment conditions were optimized by adjusting the reaction temperature and base concentration. The brief (15 min) persulfate treatment effectively degraded nonplastic microparticles (non-MPs) but minimally affected the physicochemical properties of polyethylene (PE)-MPs. Consequently, pretreating a mixture of PE-MPs and non-MPs in deionized (DI) water and various natural waters enabled the selective quantification of PE-MPs. Furthermore, the physicochemical properties of polypropylene (PP), polyvinyl chloride (PVC), poly(methyl methacrylate) (PMMA)-MPs, and UV-aged PE-MPs underwent negligible changes during the persulfate treatment, thereby indicating the feasibility of using the method across various types of MPs. In addition, the properties of MPs in natural water were simulated by considering the formation of biofilms and the adsorption of impurities, both of which can interfere with MP analysis. The activated persulfate oxidation separated bioaggregated MPs into individual particles by degrading the biofilms and removed adsorbed impurities, such as natural organic matter and clay minerals, from the surfaces of MPs.

Abstract Image

活化过硫酸盐氧化预处理定量测定天然水中微塑料
天然水体中微塑料对人类健康和环境的有害影响引起了人们对相应定量方法的关注。然而,要准确定量测定天然水中的MPs,需要对样品进行细致的预处理,以将其与其他颗粒区分开来。为了满足这一需求,我们开发了一种基于热和碱活化过硫酸盐氧化的快速简单的预处理方法,并结合荧光显微镜。通过调节反应温度和碱浓度对预处理条件进行优化。短暂的(15分钟)过硫酸盐处理有效地降解了非塑性微粒(non-MPs),但对聚乙烯(PE)-MPs的物理化学性质影响最小。因此,在去离子水(DI)和各种天然水中预处理PE-MPs和非mps的混合物,可以选择性地定量PE-MPs。此外,聚丙烯(PP)、聚氯乙烯(PVC)、聚甲基丙烯酸甲酯(PMMA)-MPs和紫外线老化的PE-MPs的理化性质在过硫酸盐处理过程中变化可以忽略,从而表明该方法适用于各种类型的MPs。此外,通过考虑生物膜的形成和杂质的吸附,模拟了天然水中MPs的性质,这两个因素都会干扰MP的分析。活化的过硫酸盐氧化通过降解生物膜将生物聚集的MPs分离成单个颗粒,并从MPs表面去除吸附的杂质,如天然有机物和粘土矿物。
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来源期刊
ACS ES&T engineering
ACS ES&T engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
8.50
自引率
0.00%
发文量
0
期刊介绍: ACS ES&T Engineering publishes impactful research and review articles across all realms of environmental technology and engineering, employing a rigorous peer-review process. As a specialized journal, it aims to provide an international platform for research and innovation, inviting contributions on materials technologies, processes, data analytics, and engineering systems that can effectively manage, protect, and remediate air, water, and soil quality, as well as treat wastes and recover resources. The journal encourages research that supports informed decision-making within complex engineered systems and is grounded in mechanistic science and analytics, describing intricate environmental engineering systems. It considers papers presenting novel advancements, spanning from laboratory discovery to field-based application. However, case or demonstration studies lacking significant scientific advancements and technological innovations are not within its scope. Contributions containing experimental and/or theoretical methods, rooted in engineering principles and integrated with knowledge from other disciplines, are welcomed.
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