Sampling and pre-treatment effects on the quantification of (nano)silver and selected trace elements in surface water - Application in a Dutch case study
- 1. Technical University of Munich, Division of Analytical Chemistry, Department of Chemistry, Lichtenbergstraße 4, Garching 85748 (Germany)
- 2. Stichting Waterproef, Section Chemistry, Dijkgraaf Poschlaan 6, Edam 1135 GP, the (Netherlands)
- 3. Vrije Universiteit Amsterdam, Department Environment and Health, De Boelelaan 1085, Amsterdam 1081 HV, the (Netherlands)
- 4. TNO, Department Environmental Modelling, Sensing and Analysis (EMSA), Princetonlaan 6, Utrecht 3584 CB, the (Netherlands)
Description
Highlights: • This interlaboratory study investigated channel water with high comparability. • Silver based nanoparticles were identified in a Dutch channel. • Nanoparticle content declined with distance to a wastewater treatment plant. • Evidences for particulate species of other elements in channel water became obvious. -- Abstract: Detection and quantification of trace elements in aqueous samples is crucial in terms of environmental monitoring and risk assessment for (heavy) metals in the environment. Silver (Ag) in its nanoparticulate form is commonly used as antimicrobial additive in consumer products and pharmaceuticals. Since released dissolved Ag species act as the actual antimicrobial agent, Ag nanomaterials are supposed to pose risks to the environment by a release of dissolved species. Unfortunately, no standard protocols exist yet to gain reliable information about the presence and distribution of nanomaterials in the environment. Therefore, we present an interlaboratory collaboration involving three laboratories to quantify silver, silver based nanoparticles (Ag-b-NPs) and a wide range of relevant trace elements after different sample pre-treatments for profiling surface water of a Dutch channel. Besides quantification of the elements, different sample pretreatments like acidification, with or without filtration, and their effect on the measurable elemental content were studied. Total Ag and Ag-b-NPs were quantified at lower ng L−1 range in the channel water whereas reasonable differences depending on the pre-treatment were identified; Ba, As, Pb, Co, Cr, Cu, Ni and Zn were detected at μg L−1 range and Na, K, Mg, Ca and Fe at mg L−1 range. Significant sample pre-treatment effects were observed for the elements Cr, Cu, Fe, Pb and Zn, which is very likely due to the existence of particulate species. Measured concentrations were well comparable among the three laboratories underpinning method validity and correctness allowing for a comprehensive, reliable risk assessment for nanomaterials in the environment.
Additional details
Identifiers
- DOI
- 10.1016/j.scitotenv.2019.01.244;
- PII
- S0048969719302530;
Publishing Information
- Journal Title
- Science of the Total Environment
- Journal Volume
- 663
- Journal Page Range
- p. 154-161
- ISSN
- 0048-9697
- CODEN
- STENDL
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 55060531
- Subject category
- S54: ENVIRONMENTAL SCIENCES;
- Descriptors DEI
- ACIDIFICATION; ANTIMICROBIAL AGENTS; CONCENTRATION RATIO; CONSUMER PRODUCTS; ECOLOGICAL CONCENTRATION; ENVIRONMENT; HEAVY METALS; ICP MASS SPECTROSCOPY; INTERLABORATORY COMPARISONS; NANOMATERIALS; NANOPARTICLES; PARTICULATES; RISK ASSESSMENT; SAMPLING; SILVER; TRACE AMOUNTS; WASTE WATER; WATER TREATMENT
- Descriptors DEC
- ANTI-INFECTIVE AGENTS; DIMENSIONLESS NUMBERS; DRUGS; ELEMENTS; HYDROGEN COMPOUNDS; LIQUID WASTES; MASS SPECTROSCOPY; MATERIALS; METALS; OXYGEN COMPOUNDS; PARTICLES; SPECTROSCOPY; TRANSITION ELEMENTS; WASTES; WATER
Optional Information
- Copyright
- Copyright (c) 2019 Elsevier B.V. All rights reserved.