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Greywater treatment using treatment wetland systems – five cases from Northern Europe

Hall, Ashley LU orcid ; Davidsson, Åsa LU orcid and Kjerstadius, Hamse LU (2026) In Water Science and Technology 93(7). p.1100-1116
Abstract

Treatment wetlands are widely used for greywater treatment in Europe, but upcoming stricter nutrient limits in the revised EU Urban Wastewater Treatment Directive (EU 2024/3019) raise questions about their ability to meet future standards. This is especially relevant as interest increases in scaling systems beyond 1,000 PE and in reusing treated greywater, which under the EU Water Reuse Regulation (EU 2020/741) requires compliance with EU 2024/3019 effluent limits. To assess performance under these conditions, four greywater treatment wetlands and one mixed wastewater reference wetland were monitored for 18 months. All wetlands consistently produced dissolved COD below 50 mg/L, within the strictest limit of 125 mg COD/L. However, only... (More)

Treatment wetlands are widely used for greywater treatment in Europe, but upcoming stricter nutrient limits in the revised EU Urban Wastewater Treatment Directive (EU 2024/3019) raise questions about their ability to meet future standards. This is especially relevant as interest increases in scaling systems beyond 1,000 PE and in reusing treated greywater, which under the EU Water Reuse Regulation (EU 2020/741) requires compliance with EU 2024/3019 effluent limits. To assess performance under these conditions, four greywater treatment wetlands and one mixed wastewater reference wetland were monitored for 18 months. All wetlands consistently produced dissolved COD below 50 mg/L, within the strictest limit of 125 mg COD/L. However, only three of the wetlands achieved total nitrogen concentrations below the required 6 mg N/L. Regarding total phosphorus, only the two wetlands, which used phosphorus adsorbing media, met the 0.5 mg P/L limit. Performance was not strongly linked to flow path design. Instead, lower nitrogen loading and use of phosphorus adsorbing media were associated with higher quality effluents. Other factors, including system age and groundwater interactions, showed no consistent influence across sites. Overall, results show that treatment wetlands can meet EU wastewater requirements for greywater, though nutrient removal may require targeted design strategies.

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type
Contribution to journal
publication status
published
subject
keywords
greywater treatment, nature-based solutions, soil filters, source-separated sanitation, treatment wetlands
in
Water Science and Technology
volume
93
issue
7
pages
17 pages
publisher
IWA Publishing
external identifiers
  • scopus:105037840172
  • pmid:41983987
ISSN
0273-1223
DOI
10.2166/wst.2026.254
language
English
LU publication?
yes
id
9038457c-7ee2-44ab-b700-164261e1d40b
date added to LUP
2026-07-10 14:53:13
date last changed
2026-08-07 17:02:31
@article{9038457c-7ee2-44ab-b700-164261e1d40b,
  abstract     = {{<p>Treatment wetlands are widely used for greywater treatment in Europe, but upcoming stricter nutrient limits in the revised EU Urban Wastewater Treatment Directive (EU 2024/3019) raise questions about their ability to meet future standards. This is especially relevant as interest increases in scaling systems beyond 1,000 PE and in reusing treated greywater, which under the EU Water Reuse Regulation (EU 2020/741) requires compliance with EU 2024/3019 effluent limits. To assess performance under these conditions, four greywater treatment wetlands and one mixed wastewater reference wetland were monitored for 18 months. All wetlands consistently produced dissolved COD below 50 mg/L, within the strictest limit of 125 mg COD/L. However, only three of the wetlands achieved total nitrogen concentrations below the required 6 mg N/L. Regarding total phosphorus, only the two wetlands, which used phosphorus adsorbing media, met the 0.5 mg P/L limit. Performance was not strongly linked to flow path design. Instead, lower nitrogen loading and use of phosphorus adsorbing media were associated with higher quality effluents. Other factors, including system age and groundwater interactions, showed no consistent influence across sites. Overall, results show that treatment wetlands can meet EU wastewater requirements for greywater, though nutrient removal may require targeted design strategies.</p>}},
  author       = {{Hall, Ashley and Davidsson, Åsa and Kjerstadius, Hamse}},
  issn         = {{0273-1223}},
  keywords     = {{greywater treatment; nature-based solutions; soil filters; source-separated sanitation; treatment wetlands}},
  language     = {{eng}},
  month        = {{04}},
  number       = {{7}},
  pages        = {{1100--1116}},
  publisher    = {{IWA Publishing}},
  series       = {{Water Science and Technology}},
  title        = {{Greywater treatment using treatment wetland systems – five cases from Northern Europe}},
  url          = {{http://dx.doi.org/10.2166/wst.2026.254}},
  doi          = {{10.2166/wst.2026.254}},
  volume       = {{93}},
  year         = {{2026}},
}