4.8 Article

Risk assessment for drugs of abuse in the Dutch watercycle

Journal

WATER RESEARCH
Volume 47, Issue 5, Pages 1848-1857

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.watres.2013.01.013

Keywords

Drugs of abuse; Sewage water; Surface water; Drinking water; Environmental risk characterization

Funding

  1. Inspectorate of the Dutch ministry of Infrastructure and the Environment
  2. Joint Research Programme (BTO) of the Dutch water companies
  3. Generalitat Valenciana [ISIC/2012/016]
  4. FWO (Research Foundation Flanders)

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A screening campaign of drugs of abuse (DOA) and their relevant metabolites in the aqueous environment was performed in the Netherlands. The presence of DOA, together with the potential risks for the environment and the possible human exposure to these compounds through consumption of drinking water was investigated. Sewage water (influent and effluent), surface water of the rivers Rhine and Meuse, and drinking water (raw and finished) were analysed by four different laboratories using fully in-house validated methods for a total number of 34 DOA and metabolites. In this way, data reported for several compounds could also be confirmed by other laboratories, giving extra confidence to the results obtained in this study. In total 17 and 22 DOA were detected and quantified in influent and effluent sewage samples, respectively. The tranquilizers oxazepam and temazepam, and cocaine and its metabolite benzoylecgonine were found in high concentrations in sewage water. Nine compounds were possibly not efficiently removed during treatment and were detected in surface waters. The results indicated that substantial fractions of the total load of DOA and metabolites in the rivers Rhine and Meuse enter the Netherlands from abroad. For some compounds, loads appear to increase going downstream, which is caused by a contribution from Dutch sewage water effluents. As far as data are available, no environmental effects are expected of the measured DOA in surface waters. In raw water, three DOA were detected, whereas in only one finished drinking water out of the 17 tested, benzoylecgonine was identified, albeit at a concentration below the limit of quantification (<1 ng/L). Concentrations were well below the general signal value of 1 mu g/L, which is specified for organic compounds of anthropogenic origin in the Dutch Drinking Water Act. (C) 2013 Elsevier Ltd. All rights reserved.

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