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首页> 外文期刊>Environmental Pollution >Long-term effects of environmentally relevant concentration of Ag nanoparticles on the pollutant removal and spatial distribution of silver in constructed wetlands with Cyperus alternifolius and Arundo donax
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Long-term effects of environmentally relevant concentration of Ag nanoparticles on the pollutant removal and spatial distribution of silver in constructed wetlands with Cyperus alternifolius and Arundo donax

机译:与环境相关的银纳米颗粒浓度对互叶莎草和芦undo人工湿地中银的污染物去除和空间分布的长期影响

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The widely usage of silver nanoparticles in a range of consumer products inevitably results in its being released to the wastewater. As a result, the potential negative effects associated with AgNPs on wastewater treatment systems need to be assessed to develop the regulatory guidelines. In this paper, the exposure experiment at environmentally relevant concentration (100 mu g L-1) were conducted to demonstrate the effects of AgNPs on the pollutant removals in constructed wetlands (CWs) with different plants and the spatial distribution of silver. Before adding AgNPs, the system with Arundo donax (VF2) had the better nitrogen removal than Cyperus alternifolius (VF1). After exposure for about 94 d, the average removal efficiencies of NH4+-N significantly reduced by 32.43% and 23.92%, TN of 15.82% and 17.18% and TP of 22.74% and 20.46% in VF1 and VF2, respectively, while the COD removal had no difference. However, presence of 100 mu g L-1 AgNPs for about 450 d showed no inhibition effects on nutrient removals in two experimental CWs. Two wetlands showed high removal efficiencies of about 98% on AgNPs, indicating CWs could play a crucial role to control the AgNPs release to environment. It was found that AgNPs mainly accumulated in the soil layer with the Ag content of 0.45-5.96 mu g g(-1) dry weight in lower soil and 2.84-11.37 mu g g(-1) dry weight in upper soil. The roots of Cyperus alternifolius absorbed more AgNPs, with higher bioconcentration factors (1.32-1.44) than that of 0.59 in Arundo donax. The differences of translocation factors on leaves and stems in two test plants showed that AgNPs assimilated by roots in Cyperus alternifolius were more easily transferred to the leaves. The obtained results showed that the macrophyte Cyperus alternifolius could be better choice for immobilization of AgNPs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:银纳米颗粒在一系列消费产品中的广泛使用不可避免地导致其释放到废水中。因此,需要评估与AgNPs相关的废水处理系统的潜在负面影响,以制定法规指南。在本文中,进行了与环境有关的浓度(100μg L-1)的暴露实验,以证明AgNPs对不同植物人工湿地(CW)中污染物去除的影响以及银的空间分布。在添加AgNP之前,带有Arundo donax(VF2)的系统的氮去除率比Altern alternolius(VF1)更好。暴露约94 d后,VF1和VF2中NH4 + -N的平均去除效率分别显着降低32.43%和23.92%,TN分别降低15.82%和17.18%和TP分别为22.74%和20.46%,而COD去除没有区别。然而,在两个实验连续波中,100μg L-1 AgNP的存在持续约450 d对抑制营养物去除没有抑制作用。两个湿地对AgNPs的去除效率很高,约为98%,这表明CW在控制AgNPs向环境的释放中起着至关重要的作用。发现AgNPs主要积累在土壤层​​中,下部土壤的Ag含量为0.45-5.96μg g(-1),上部土壤的Ag含量为2.84-11.37μg g(-1)。香附子的根吸收了更多的AgNPs,具有更高的生物富集因子(1.32-1.44),高于芦竹中的0.59。两种试验植物叶片和茎上易位因子的差异表明,莎草根中同化的AgNPs更容易转移到叶片上。所得结果表明,大型植物莎草莎草可能是固定AgNPs的较好选择。 (C)2019 Elsevier Ltd.保留所有权利。

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