FB 02 UFT - Centre for Environmental Research and Sustainable Technology, General and Theoretical Ecology, University of Bremen, Leobener Str. 6, 28359 Bremen, Germany.
FB 02 UFT - Centre for Environmental Research and Sustainable Technology, Chemical Process Engineering, University of Bremen, Leobener Str. 6, 28359 Bremen, Germany.
Environ Sci Technol. 2023 Aug 22;57(33):12376-12387. doi: 10.1021/acs.est.3c00493. Epub 2023 Aug 10.
Transformation, dissolution, and sorption of copper oxide nanoparticles (CuO-NP) play an important role in freshwater ecosystems. We present the first mesocosm experiment on the fate of CuO-NP and the dynamics of the zooplankton community over a period of 12 months. Increasingly low (0.08-0.28 mg Cu L) and high (0.99-2.99 mg Cu L) concentrations of CuO-NP and CuSO (0.10-0.34 mg Cu L) were tested in a multiple dosing scenario. At the high applied concentration (CuO-NP_H) CuO-NP aggregated and sank onto the sediment layer, where we recovered 63% of Cu applied. For the low concentration (CuO-NP_L) only 41% of applied copper could be recovered in the sediment. In the water column, the percentage of initially applied Cu recovered was on average 3-fold higher for CuO-NP_L than for CuO-NP_H. Zooplankton abundance was substantially compromised in the treatments CuSO ( < 0.001) and CuO-NP_L ( < 0.001). Community analysis indicated that Cladocera were most affected (b = -0.49), followed by Nematocera (b = -0.32). The abundance of Cladocera over time and of Dixidae in summer was significantly reduced in the treatment CuO-NP_L ( < 0.001; < 0.05) compared to the Control. Our results indicate a higher potential for negative impacts on the freshwater community when lower concentrations of CuO-NP (<0.1 mg Cu L) enter the ecosystem.
氧化铜纳米颗粒(CuO-NP)的转化、溶解和吸附在淡水生态系统中起着重要作用。我们首次进行了为期 12 个月的中观实验,研究了 CuO-NP 的命运和浮游动物群落的动态。在多次投加的情况下,我们测试了越来越低(0.08-0.28 mg Cu L)和高(0.99-2.99 mg Cu L)浓度的 CuO-NP 和 CuSO(0.10-0.34 mg Cu L)。在高应用浓度(CuO-NP_H)下,CuO-NP 聚集并下沉到沉积物层中,我们从那里回收了 63%的应用铜。对于低浓度(CuO-NP_L),只有 41%的应用铜可以在沉积物中回收。在水柱中,对于 CuO-NP_L,最初应用的铜有平均 3 倍以上的比例被回收。在 CuSO(<0.001)和 CuO-NP_L(<0.001)处理中,浮游动物的丰度受到严重影响。群落分析表明,枝角类受影响最大(b = -0.49),其次是线虫类(b = -0.32)。与对照相比,CuO-NP_L 处理中(<0.001;<0.05)枝角类的时间和夏季 Dixidae 的丰度显著减少。我们的结果表明,当较低浓度的 CuO-NP(<0.1 mg Cu L)进入生态系统时,对淡水生物群落产生负面影响的潜力更高。