TY - JOUR
T1 - A holistic framework for wetland placement and ecosystem service delivery by integrating landscape connectivity and participatory decision analysis in two Swedish catchments
AU - Rezvani, Amir
AU - Cavalli, Marco
AU - Crema, Stefano
AU - Djodjic, Faruk
AU - Futter, Martyn
AU - Ferreira, Carla Sofia Santos
AU - Haozhi, Pan
AU - Kalantari, Zahra
N1 - Publisher Copyright:
© 2025 The Authors
PY - 2025
Y1 - 2025
N2 - Study region: This study focuses on two catchments in Uppsala County, Sweden, H & aring;ga & aring;n and Enkopings & aring;n, which differ in landscape morphology, land use, and hydrological characteristics. Both catchments drain into Lake Malaren, a vital water resource in the region. These areas were selected for their socio-ecological relevance and the active involvement of local stakeholders in catchment management. Study focus: The paper presents a holistic decision-support framework for optimizing wetland placement by integrating sediment connectivity modeling, hydrological assessments, and stakeholder-defined indicators using multi-criteria decision analysis (MCDA). Landscape connectivity modelling, incorporating structural and functional connectivity indices, assessed sediment transfer dynamics and prioritized potential wetland sites. A participatory process, involving municipalities and regional actors, was used to define priority ecosystem functions and evaluate candidate wetland sites based on biophysical and socio-economic criteria. An upstream-downstream analysis was also incorporated to assess interactions across landscape positions. New hydrological insights: The study demonstrates that high-priority wetland sites are typically located at the intersection of elevated hydrological and geomorphological connectivity. Findings emphasize the value of combining landscape connectivity modeling with stakeholder knowledge to improve the spatial targeting of wetlands as nature-based solutions (NBS). The approach supports more strategic implementation of wetlands for sediment and water regulation, enhancing resilience in contrasting lowland catchments. The framework is transferable to other regions seeking integrated, stakeholder-driven wetland planning under changing land use and climate conditions.
AB - Study region: This study focuses on two catchments in Uppsala County, Sweden, H & aring;ga & aring;n and Enkopings & aring;n, which differ in landscape morphology, land use, and hydrological characteristics. Both catchments drain into Lake Malaren, a vital water resource in the region. These areas were selected for their socio-ecological relevance and the active involvement of local stakeholders in catchment management. Study focus: The paper presents a holistic decision-support framework for optimizing wetland placement by integrating sediment connectivity modeling, hydrological assessments, and stakeholder-defined indicators using multi-criteria decision analysis (MCDA). Landscape connectivity modelling, incorporating structural and functional connectivity indices, assessed sediment transfer dynamics and prioritized potential wetland sites. A participatory process, involving municipalities and regional actors, was used to define priority ecosystem functions and evaluate candidate wetland sites based on biophysical and socio-economic criteria. An upstream-downstream analysis was also incorporated to assess interactions across landscape positions. New hydrological insights: The study demonstrates that high-priority wetland sites are typically located at the intersection of elevated hydrological and geomorphological connectivity. Findings emphasize the value of combining landscape connectivity modeling with stakeholder knowledge to improve the spatial targeting of wetlands as nature-based solutions (NBS). The approach supports more strategic implementation of wetlands for sediment and water regulation, enhancing resilience in contrasting lowland catchments. The framework is transferable to other regions seeking integrated, stakeholder-driven wetland planning under changing land use and climate conditions.
KW - Catchment-scale water management
KW - Multi-criteria decision analysis (MCDA)
KW - Nature-based solutions (NBS)
KW - Sediment connectivity modeling
KW - Stakeholder-informed hydrological planning
KW - Wetland site selection
KW - Catchment-scale water management
KW - Multi-criteria decision analysis (MCDA)
KW - Nature-based solutions (NBS)
KW - Sediment connectivity modeling
KW - Stakeholder-informed hydrological planning
KW - Wetland site selection
UR - https://res.slu.se/id/publ/144628
U2 - 10.1016/j.ejrh.2025.102669
DO - 10.1016/j.ejrh.2025.102669
M3 - Journal article
AN - SCOPUS:105012726936
SN - 2214-5818
VL - 61
JO - Journal of Hydrology: Regional Studies
JF - Journal of Hydrology: Regional Studies
M1 - 102669
ER -