Literature DB >> 27289392

Impact of surface coating and environmental conditions on the fate and transport of silver nanoparticles in the aquatic environment.

Laura-Jayne A Ellis1, Eugenia Valsami-Jones1, Jamie R Lead2, Mohammed Baalousha3.   

Abstract

The role of surface coating (polyvinylpyrrolidone (PVP) and citrate) and water chemistry on the fate and behavior of AgNPs in aquatic microcosms is reported in this study. The migration and transformation of the AgNPs was examined in low (ultrapure water-UPW) and high ionic strength (moderately hard water - MHW) preparations, and in the presence of modeled natural organic matter (NOM) of Suwannee River Fulvic Acid (SRFA). The migration and fate of the AgNPs in the microcosms was validated using a sedimentation-diffusion model and the aggregation behavior was monitored by UV-visible spectrometry (UV-vis). Dissolved and particulate Ag concentrations (% Ag) were analyzed by ultrafiltration methods. Imaging of the AgNPs was captured using transmission electron microscopy (TEM). Results indicate that PVP-coated AgNPs (PVP-AgNPs) remained stable for 28days with similarly distributed concentrations of the PVP-AgNPs throughout the columns in each of the water conditions after approximately 96h (4days). The sedimentation-diffusion model confirmed PVP-AgNP stability in each condition, by showing diffusion dominated transport by using the original unaltered AgNP sizes to fit the parameters. In comparison, citrate AgNPs were largely unstable in the more complex water preparations (MHW). In MHW, aggregation dominated behavior followed by sedimentation/dissolution controlled transport was observed. The addition of SRFA to MHW resulted in small stabilizing effects, to the citrate coated AgNPs, producing smaller sized AgNPs (TEM) and mixed sedimentation and diffusion migration compared the studies absent of SRFA. The results suggest that surface coating and solution chemistry has a major impact on AgNP stability, furthermore the corresponding modeling will support the experimental understanding of the overall fate of AgNPs in the environment.
Copyright © 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Aquatic microcosms; Citrate and PVP AgNPs; Fate and behavior; Suwannee River Fulvic Acid; TEM; UV–vis

Year:  2016        PMID: 27289392     DOI: 10.1016/j.scitotenv.2016.05.199

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  2 in total

Review 1.  Behavior and Potential Impacts of Metal-Based Engineered Nanoparticles in Aquatic Environments.

Authors:  Cheng Peng; Wen Zhang; Haiping Gao; Yang Li; Xin Tong; Kungang Li; Xiaoshan Zhu; Yixiang Wang; Yongsheng Chen
Journal:  Nanomaterials (Basel)       Date:  2017-01-22       Impact factor: 5.076

2.  Advancing the Understanding of Environmental Transformations, Bioavailability and Effects of Nanomaterials, an International US Environmental Protection Agency-UK Environmental Nanoscience Initiative Joint Program.

Authors:  Mitch M Lasat; Kian Fan Chung; Jamie Lead; Steve McGrath; Richard J Owen; Sophie Rocks; Jason Unrine; Junfeng Zhang
Journal:  J Environ Prot (Irvine, Calif)       Date:  2018-04-02
  2 in total

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