Stormwater Quality and Long-Term Efficiency Capturing Potential Toxic Elements in Sustainable Urban Drainage Systems—Is the Soil Quality of Bio-Swales after 10–20 Years Still Acceptable?

Author:

Boogaard Floris Cornelis12ORCID,Venvik Guri3ORCID,Roest Allard Hans1ORCID

Affiliation:

1. Research Centre for Built Environment NoorderRuimte, Hanze University of Applied Sciences Groningen, Zernikeplein 7, P.O. Box 30030, 9747 AS Groningen, The Netherlands

2. Deltares, Daltonlaan 600, P.O. Box 85467, 3508 AL Utrecht, The Netherlands

3. Geological Survey of Norway, P.O. Box 6315 Torgarden, 7491 Trondheim, Norway

Abstract

Sustainable urban drainage systems (SuDS) or nature-based solutions (NBSs) are widely implemented to collect, store and infiltrate stormwater. The buildup of pollutants is expected in NBSs, and Dutch guidelines advise monitoring the topsoil of bio-swales every 5 years. In the Netherlands, almost every municipality has implemented bio-swales. Some municipalities have over 300 bio-swales, and monitoring all their NBSs is challenging due to cost and capacity. In this study, 20 locations where bio-swales with ages ranging between 10 and 20 years old were selected for a field investigation to answer the following question: is the soil quality of bio-swales after 10 years still acceptable? Portable XRF instruments were used to detect potential toxic elements (PTEs) for in situ measurements. The results showed that for copper (Cu), zinc (Zn) and lead (Pb), 30%, 40% and 25% of the locations show values above the threshold and 5%, 20% and 0% above the intervention threshold, meaning immediate action should be taken. The results are of importance for stakeholders in (inter)national cities that implement, maintain, and monitor NBS. Knowledge of stormwater and soil quality related to long-term health risks from NBS enables urban planners to implement the most appropriate stormwater management strategies. With these research results, the Dutch guidelines for design, construction, and maintenance can be updated, and stakeholders are reminded that the monitoring of green infrastructure should be planned and executed every 5 years.

Funder

SIA

Publisher

MDPI AG

Reference44 articles.

1. Core Writing Team, Lee, H., and Romero, J. (2023). IPCC, 2023: Climate Change 2023: Synthesis Report. Contribution of Working Groups I, II and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, IPCC.

2. The Relative Impact of Toxic Heavy Metals (THMs) (Arsenic (As), Cadmium (Cd), Chromium (Cr) (VI), Mercury (Hg), and Lead (Pb)) on the Total Environment: An Overview;Rahman;Environ. Monit. Assess.,2019

3. Critical Review of Heavy Metal Pollution of Traffic Area Runoff: Occurrence, Influencing Factors, and Partitioning;Huber;Sci. Total Environ.,2016

4. Metals Associated with Stormwater-Relevant Brake and Tire Samples;McKenzie;Sci. Total Environ.,2009

5. Folkeson, L., Bækken, T., Brenčič, M., Dawson, A., Frančois, D., Kuřímská, P., Leitão, T., Ličbinský, R., and Vojtěšek, M. (2009). Water in Road Structures. Geotechnical, Geological and Earthquake Engineering, Springer.

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