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Dataset on stormwater bioretention column studies: Impact of temperature, salt and a submerged zone on the removal of metals, nutrients and suspended solids
Luleå University of Technology, Department of Civil, Environmental and Natural Resources Engineering, Architecture and Water.ORCID iD: 0000-0001-5548-4397
Luleå University of Technology, Department of Civil, Environmental and Natural Resources Engineering, Architecture and Water.
Luleå University of Technology, Department of Civil, Environmental and Natural Resources Engineering, Architecture and Water.ORCID iD: 0000-0003-1725-6478
Luleå University of Technology, Department of Civil, Environmental and Natural Resources Engineering, Architecture and Water.
Responsible organisation
2022 (English)Data setAlternative title
Dataset för dagvattenbiofilter kolonnstudier: påverkan av temperatur, salt och en vattenmättad zon på rening av metaller, näringsämnen, och suspenderad material (Swedish)
Physical description [en]

See documentation files:- SummarisingDescription.pdf - summarising description of experiments incl. an illustration of column design- SummarisingTable.xlsx - table with overview of studies and included parameters (pollutants) and factors. The table describes the content of each data file.

Further information on experimental design and methods are available in the related scientific journal publications.

Abstract [en]

This data set presents the full raw data from bioretention column studies conducted at Luleå University of Technology in 2010-2014. The pilot scale columns were watered with synthetic stormwater. Influent and effluent samples were collected and analysed for pollutants including total and dissolved metals, nutrients, pathogens and suspended sediment. Further, supporting parameters (e.g. pH, conductivity) are included. The data enables quantifying the impact of bioretention design factors (submerged zone) and ambient factors (salinity in stormwater inflow, temperature) on the removal of these pollutants by bioretention. All filters utilised the same general column design and filter material as well as stormwater preparation. This enables inter-comparability between the different studies. Synthetic stormwater inflow concentrations and bioretention effluent concentrations are presented in the data set. Further, metal concentrations in the filter material and plant tissue have been analysed. The data set enables further analyses of bioretention performance, comparison with similar work performed elsewhere and can be used in modelling of bioretention removal performance and processes. Scientific papers describing the data have been published (see Publications)

Abstract [sv]

Detta dataset presenterar rådata från bioretentionskolonnstudier som utförts vid Luleå tekniska universitet 2010-2014. Kolonnerna i pilotskala vattnades med konstgjort dagvatten. Inflödes- och utflödesprover samlades och analyserades för en rad olika föroreningar: totala och lösta metaller, näringsämnen och suspenderat sediment. Dessutom har stödparametrar (t ex. pH, konduktivitet) analyserats. Datat möjliggör att kvantifiera effekten av designfaktorer (vattenmättad zon) och omgivningsfaktorer (salthalt i dagvatteninflödet, temperatur) på rening av dessa föroreningar i dagvattenbiofilter. Alla filter använde samma kolonndeisgn och filtermaterial samt samma dagvattenrecept. Detta möjliggör att jämföra de olika studierna. Föroreningskoncentrationer i dagvatteninflödet och i utflödet från biofiltren presenteras i datamaterialet. Dessutom har metallkoncentrationer i filtermaterialet och växtvävnad analyserats. Datat möjliggör ytterligare analyser av bioretentionens prestanda, jämförelser med liknande arbete som utförts på andra håll och kan användas för modellering av biofiltrens reningskapacitet och reningsprocesser. Vetenskapliga artiklar som beskriver datat har publicerats (se referenser).

Place, publisher, year
Svensk nationell datatjänst (SND) , 2022.
Keywords [en]
suspended solids, phosphorus, stormwater biofilter, urban hydrology, rain garden, stormwater, biofilter, plant traits, pathogens, nitrogen, metals
National Category
Water Engineering
Research subject
Urban Water Engineering
Identifiers
URN: urn:nbn:se:ltu:diva-92761DOI: 10.5878/aed6-3415OAI: oai:DiVA.org:ltu-92761DiVA, id: diva2:1692370
Available from: 2022-09-01 Created: 2022-09-01 Last updated: 2023-09-05Bibliographically approved

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Blecken, Godecke-TobiasNordqvist, KerstinViklander, MariaSøberg, Laila

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Blecken, Godecke-TobiasNordqvist, KerstinViklander, MariaSøberg, Laila
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Architecture and Water
Water Engineering
Søberg, L., Viklander, M. & Blecken, G.-T. (2017). Do salt and low temperature impair metal treatment in stormwater bioretention cells with or without a submerged zone?. Science of the Total Environment, 579, 1588-1599Blecken, G.-T., Zinger, Y., Deletic, A., Fletcher, T., Hedström, A. & Viklander, M. (2010). Laboratory study on stormwater biofiltration: nutrient and sediment removal in cold temperatures (ed.). Journal of Hydrology, 394(3-4), 507-514Blecken, G.-T., Zinger, Y., Muthanna, T. M., Deletic, A., Fletcher, T. D. & Viklander, M. (2007). The influence of temperature on nutrient treatment efficiency in stormwater biofilter systems (ed.). Water Science and Technology, 56(10), 83-91Søberg, L. C., Al-Rubaei, A. M., Viklander, M. & Blecken, G.-T. (2020). Phosphorus and TSS Removal by Stormwater Bioretention: Effects of Temperature, Salt, and a Submerged Zone and Their Interactions. Water, Air and Soil Pollution, 231(6), Article ID 270. Blecken, G.-T., Marsalek, J. & Viklander, M. (2011). Laboratory study of stormwater biofiltration in low temperatures: total and dissolved metal removal and fates (ed.). Water, Air and Soil Pollution, 219(1-4), 303-317Søberg, L. C., Viklander, M. & Blecken, G.-T. (2014). The influence of temperature and salt on metal and sediment removal in stormwater biofilters (ed.). Paper presented at Nordiwa 2013 : 08/10/2013 - 10/10/2013. Water Science and Technology, 69(11), 2295-2304

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