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树皮和生物炭在水平流过滤器中能有效去除雨水径流中的微塑料。

Bark and biochar in horizontal flow filters effectively remove microplastics from stormwater.

机构信息

Department of Earth Sciences, Uppsala University, Villavägen 16, SE-752 36, Sweden.

Environmental Dynamics, Department of Science and Environment, Roskilde University, Universitetsvej 1, 11.2 DK-4000, Roskilde, Denmark.

出版信息

Environ Pollut. 2024 Sep 1;356:124335. doi: 10.1016/j.envpol.2024.124335. Epub 2024 Jun 5.

Abstract

Organic materials such as bark and biochar can be effective filter materials to treat stormwater. However, the efficiency of such filters in retaining microplastics (MPs) - an emerging stormwater pollutant - has not been sufficiently studied. This study investigated the removal and transport of a mixture of MPs commonly associated with stormwater. Different MP types (polyamide, polyethylene, polypropylene, and polystyrene) were mixed into the initial 2 cm material of horizontal bark and biochar filters of 25, 50, and 100 cm lengths. The MP types consisted of spherical and fragmented shapes in size ranges of 25-900 μm. The filters were subjected to a water flow of 5 mL/min for one week, and the total effluents were analyzed for MPs by μFTIR imaging. To gain a deeper insight, one 100 cm bark filter replica was split into 10 cm segments, and MPs in each segment were extracted and counted. The results showed that MPs were retained effectively, >97%, in all biochar and bark filters. However, MPs were detected in all effluents regardless of filter length. Effluent concentrations of 5-750 MP/L and 35-355 MP/L were measured in bark and biochar effluents, respectively, with >91% of the MP counts consisting of small-sized (25 μm) polyamide spherical particles. Combining all data, a decrease in average MP concentration was noticed with longer filters, likely attributed to channeling in a 25 and 50-cm filter. The analyses of MPs in the bark media revealed that most MPs were retained in the 0-10 cm segment but that some MPs were transported further, with 19% of polyamide retained in the 80-90 cm segment. Overall, this study shows promising results for bark and biochar filters to retain MPs, while highlighting the importance of systematic packing of filters to reduce MP emissions to the environment from polluted stormwater.

摘要

有机材料,如树皮和生物炭,可以作为有效的过滤材料来处理雨水。然而,这种过滤器对微塑料(MPs)的截留效率(一种新兴的雨水污染物)尚未得到充分研究。本研究调查了混合 MPs 的去除和运移,这些 MPs 通常与雨水有关。不同的 MPs 类型(聚酰胺、聚乙烯、聚丙烯和聚苯乙烯)被混合到 25、50 和 100 cm 长度的水平树皮和生物炭过滤器的初始 2 cm 材料中。MP 类型包括尺寸为 25-900 μm 的球形和碎片形。过滤器以 5 mL/min 的水流进行了一周的处理,通过 μFTIR 成像对总流出物中的 MPs 进行了分析。为了更深入地了解,将一个 100 cm 长的树皮过滤器复制体分成 10 cm 段,从每个段中提取和计数 MPs。结果表明,所有生物炭和树皮过滤器对 MPs 的截留率均>97%。然而,无论过滤器的长度如何,所有流出物中都检测到了 MPs。在树皮和生物炭流出物中分别测量到 5-750 MPs/L 和 35-355 MPs/L 的浓度,其中>91%的 MPs 计数由小尺寸(25 μm)聚酰胺球形颗粒组成。综合所有数据,发现随着过滤器长度的增加,平均 MPs 浓度呈下降趋势,这可能归因于 25 和 50 cm 过滤器中的通道作用。对树皮介质中 MPs 的分析表明,大多数 MPs 被保留在 0-10 cm 段,但有些 MPs 被进一步输送,其中 19%的聚酰胺被保留在 80-90 cm 段。总体而言,本研究表明树皮和生物炭过滤器对 MPs 具有良好的截留效果,同时强调了对过滤器进行系统包装以减少受污染雨水向环境排放 MPs 的重要性。

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