4.7 Article

Shifts of system performance and microbial community structure in a constructed wetland after exposing silver nanoparticles

Journal

CHEMOSPHERE
Volume 199, Issue -, Pages 661-669

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2018.02.031

Keywords

Silver nanoparticles; Nutrient removal; Microbial community; Constructed wetlands; Different substrate; On-way variation

Funding

  1. National Natural Science Foundation of China: The ecological effect and fate of typical nanoparticles in constructed wetland [51479034]
  2. National Natural Science Foundation of China: The ecological process of nitrogen removal and function reinforcement in subsurface constructed wetland in low temperature [50909019]
  3. Fundamental Research Funds for the Central Universities [2242016R30008]

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The increasing utilization of silver nanoparticles (Ag NPs) in industry and commerce inevitably raises its release into wastewater. In this work, effects of Ag NPs on system performance and microbial community along the way of a vertical flow constructed wetland (VFCW) were investigated, along with the removal and fate of Ag NPs within the system. Results showed that the performance of control wetland kept stable during the experimental period, and the top substrate layer (soil layer) of wetland could remove most of pollutants in the influent. The study also suggested that addition of Ag NPs did not significantly affect organic matters removal. However, adverse effects were observed on the nitrogen and phosphorus removal. Removal efficiencies of TN, NH4+-N and TP approximately obviously reduced by approximately 10.10%, 8.42% and 28.35% respectively in contrast to before dosing after exposing 100 [La Ag NPs for 94 d, while the no dosing wetland with the stable performance. It was found that Ag NPs accumulated in the upper soil layer more than in the lower soil layer, and Ag NPs could enter into the plant tissues. After continuous input of Ag NPs, removal efficiency of Ag NPs was measured as 95.72%, which showed that the CW could effectively remove Ag NPs from the wastewater. The high-throughput sequencing results revealed that Ag NPs caused the shifts in microbial community structures and changed the relative abundances of key functional bacteria, which finally resulted in a lower efficiency of biological nitrogen and phosphorus removal. (C) 2018 Elsevier Ltd. All rights reserved.

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