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Sustainable drainage systems (SuDS) for rainwater harvesting and stormwater management in temporary humanitarian settlements

  • Royal Agricultural University (RAU) Cirencester, Gloucestershire, GL7 6JS, England, United Kingdom
  • London South Bank University, School of Built Environment and Architecture, Division of Civil and Building Services Engineering, 103 Borough Road, London, SE1 0AA, England, United Kingdom
  • Department of Electronic and Mechanical Engineering, Faculty of Engineering and Technology, Atlantic Technological University, F92 FC93, Letterkenny, Ireland
  • University of Greenwich, Faculty of Engineering & Science, Department of Engineering Science, Medway Campus, Kent, ME44TB, England, United Kingdom
  • Department of Civil Engineering and Construction, Faculty of Engineering and Design, Atlantic Technological University, Sligo, Ireland

Research output: Contribution to journalArticlepeer-review

7 Citations (Scopus)
60 Downloads (Pure)

Abstract

Effective management of stormwater runoff is crucial in refugee camps and temporary shelters. Across the Africa, this is vital especially with the intense rainfalls due to the climate effect. Sustainable Drainage Systems (SuDS) can be implemented to provide potential sources of water resources across refugee camps and internally displaced people (IDPs). The performance of two SuDS (engineered wetlands and biofilters) was evaluated to assess their effectiveness at reducing levels of pollutants in harvested rainwater and stormwater under simulated environmental conditions of an IDP camp. The SuDS comprised a matrix of sub-surface bedding materials and filter media. Stormwater quality analysis aligned with the WHO and CIRIA standards was carried out over 61 weeks simulating environmental conditions. The SuDS significantly reduced nutrients and organics loading from the influent stormwater. The Constructed Stormwater Treatment System S1-a had an overall high performance in removing impurities (BOD – 60 %, COD – 70 %, Turbidity – 70 %, Colour – 72 %, Phosphates – 63 %, Ammonium – 57 % and Nitrates – 57 %). In addition, the Refugee Camp Engineered Stormwater Treatment System S2-d has overall well-performed impurities removal (TDS – 52 %, COD – 100 %, Turbidity – 100 %, Colour – 41 %, Phosphates – 96 %, Ammonium – 98 % and Nitrates – 88 %). The outflow samples from these SuDS found the concentrations are with high standards. However, it is recommended that the treated stormwater be reused for non-potable sources in these conditions. The implementations of this research findings can be further incorporated into the United Nations sustainable developmental goals of good health and wellbeing (SDG 3) clean water and sanitation (SDG 6), and Peace, justice and strong institutions (SDG 16).
Original languageEnglish
Article number100227
JournalNature-Based Solutions
Volume7
Early online date12 Mar 2025
DOIs
Publication statusPublished - Jun 2025
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2025 The Author(s)

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 6 - Clean Water and Sanitation
    SDG 6 Clean Water and Sanitation
  2. SDG 13 - Climate Action
    SDG 13 Climate Action
  3. SDG 16 - Peace, Justice and Strong Institutions
    SDG 16 Peace, Justice and Strong Institutions

Keywords

  • Rainwater harvesting
  • Stormwater management
  • Sustainable drainage systems
  • Temporary humanitarian settlements

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