大气中微塑料和苯乙烯低聚物的监测

B. Kwon
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引用次数: 1

摘要

目标:塑料污染是一个非常重要的环境问题。本研究的目的是监测微塑料和苯乙烯低聚物(SO)作为可从聚苯乙烯(PS)塑料中提取的人工化学物质。方法:为了实现上述目标,本研究从光州市和济州岛的空气中采集了大气样本,并使用傅里叶变换红外光谱(FTIR)和气相色谱/质谱(GC/MS)分析了微塑料和硫化学物质的浓度。在本研究中,使用不锈钢过滤器对微塑料和硫物种进行采样。结果与讨论:2019年,光州市大气中SOs的平均浓度为0.24(±0.56)µg/m3,2020年,光洲市的SOs平均浓度为0.10(±0.16)µg/m3。据监测,2020年济州岛的平均浓度为0.11(±0.07)微克/立方米。此外,2020年光州市和济州岛大气中存在的微塑料浓度在0.13颗粒/立方米到1.13颗粒/立方米之间。本次共检测到9种微塑料,检测频率最高的微塑料为聚乙烯(PE)、聚丙烯(PP)、乙烯醋酸乙烯酯(EVA)和丙烯酸酯材料。监测到的微塑料形状既有纤维也有碎片,这表明大气中的微塑料主要是从纤维中释放出来的,或者是由摩擦和断裂引起的。因此,二氧化硫和微塑料可以成为评估空气质量的新污染指标。结论:本研究首次尝试监测SOs化合物和微塑料,有望为塑料污染程度的评估做出贡献。
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Monitoring of Microplastics and Styrene Oligomers in the Atmosphere
Objectives:Plastic pollution is a very important environmental issue. The objective of this study is to monitor microplastics and styrene oligomers (SOs) as artificial chemical species that can be derived from polystyrene (PS) plastics. Methods:In order to achieve the above objective, this study collected atmospheric samples from the air of Gwangju City and Jeju Island and analyzed the concentrations of microplastics and SOs chemical species using Fourier transformed infrared spectroscopy (FTIR) and gas chromatography/mass spectroscopy (GC/MS). In this study, a stainless steel filter was used for the sampling of microplastics and SOs species.Results and Discussion:In 2019, the average concentration of SOs in the atmosphere of Gwangju City was 0.24 (± 0.56) µg/m3, and in 2020, the average concentration of SOs in Gwangju City was 0.10 (± 0.16)µg/m3. Those average concentration in Jeju Island in 2020 was monitored to be 0.11 (± 0.07) µg/m3. Moreover, the concentration of microplastics present in the atmosphere of Gwangju City and Jeju Island in 2020 ranged from 0.13 particles/m3 to 1.13 particles/m3. In this time, 9 types of microplastics were detected, and the most frequently detected microplastics were polyethylene (PE), polypropylene (PP), ethylene vinyl acetate (EVA), and acrylate materials. The monitored microplastic shapes were both fibers and fragments, suggesting that atmospheric microplastics are mainly released from fibers or caused by friction and breakage. Consequently, SOs and microplastics can be new pollution indicators for evaluating air quality. Conclusion:This study is the first attempt to monitor SOs compounds and microplastics, so it is expected to contribute to the evaluation of the extent of plastic pollution.
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