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纳米氧化锌对城市雨水绿色生物滞留系统中 Zn、Cu 和 Pb 溶解的影响。

Effect of ZnO nanoparticles on Zn, Cu, and Pb dissolution in a green bioretention system for urban stormwater remediation.

机构信息

Department of Evolutionary Biology, Ecology, and Environmental Sciences, University of Barcelona, Av. Diagonal, 643, 08015, Barcelona, Spain.

CERM, Center for the Study of Mediterranean Rivers, University of Vic - Central University of Catalonia, Ter River Museum, Passeig del Ter 2, 08560 Manlleu, Catalonia, Spain; Naturalea, Terra Alta, 51, 08211, Castellar del Vallès, Barcelona, Spain.

出版信息

Chemosphere. 2021 Nov;282:131045. doi: 10.1016/j.chemosphere.2021.131045. Epub 2021 May 29.

Abstract

Stormwater runoff from urban and suburban areas can carry hazardous pollutants directly into aquatic ecosystems. These pollutants, such as metals, nutrients, aromatic hydrocarbons, pesticides, and pharmaceuticals, are very toxic to aquatic organisms. Recently, significant amounts of zinc oxide engineered nanoparticles (ZnO-NPs) have been detected in urban stormwater and its bioretention systems. This raises concerns about a potential increase of stormwater toxicity and reduced performance of the treatment infrastructures. To tackle these issues, we developed a simple, low-cost bioretention system to remediate stormwater and retain ZnO-NPs. This system retained up to 73% Zn, 66% Cu, and >99% Pb. However, the removal efficiency for Pb was lower after adding ZnO-NPs to the system, possibly due to the remobilization of Pb phosphates. The effect of ZnO-NPs on stormwater toxicity and metal accumulation in wetland plants was also evaluated.

摘要

城市和郊区的雨水径流会将有害污染物直接带入水生态系统。这些污染物,如金属、营养物、芳烃、农药和药物,对水生生物非常有毒。最近,在城市雨水和其生物滞留系统中已检测到大量的氧化锌工程纳米颗粒(ZnO-NPs)。这引起了人们对潜在增加雨水毒性和降低处理基础设施性能的担忧。为了解决这些问题,我们开发了一种简单、低成本的生物滞留系统来修复雨水并保留 ZnO-NPs。该系统保留了高达 73%的锌、66%的铜和>99%的铅。然而,在向系统中添加 ZnO-NPs 后,Pb 的去除效率较低,可能是由于 Pb 磷酸盐的再迁移。还评估了 ZnO-NPs 对雨水毒性和湿地植物中金属积累的影响。

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