Improving MOdelling approaches to assess climate change-related THresholds and Ecological Range SHIfts in the Earth's Peatland ecosystems (MOTHERSHIP)
Lead Research Organisation:
Centre for Ecology & Hydrology
Abstract
Peatlands form in wet environments where the organic matter built up by plants every year is not fully degraded. This means that, over time, partly degraded organic matter accumulates as peat, locking away huge quantities of carbon. We call such areas 'carbon sinks' and through this process, peatlands moderate the Earth's climate. When carefully managed they are our most carbon-rich ecosystems on land. Unfortunately, due to poor management, they are currently our most intensive source of carbon dioxide emissions from land, amplifying climate change in the same way as burning fossil fuels.
The primary means by which peatlands are damaged is drainage, which lowers the water table. This changes how peatlands function, and as a consequence, such areas switch from carbon sinks to carbon sources. Around the world, 10-15% of all peatlands have been impacted by drainage and by use as cropland, production forests, and grazing. In the UK and more widely across Europe, so many peatlands have been altered that >50% of former peat accumulating habitat has been lost.
As part of the effort to reduce global emissions, governments across Europe have invested significant sums in peatland restoration efforts, however it is unclear whether these efforts will be successful in the light of climate change, particularly increasing global temperature and changes to rainfall patterns. In this project, we will investigate whether degraded peatlands differ from natural peatlands in the way they react to climate change. Using sites across the European climate gradient, we will examine what effect variations in weather over several years have on GHG emissions from natural and disturbed peatlands. Using a regional-to-global scale model to simulate future weather to 2100, we will use our new information to enable better policy decisions to sustainably manage peatlands. This will be achieved in the following way:
First, we will determine how differences in climate and management affect how peatlands function, using measurements from 44 micrometeorological stations and thousands of satellite (Earth Observation) data points across Europe. The satellite data will enable us to understand processes on a far larger landscape scale than the field data. We will also use satellite data to determine the physical up-and-down movement of 15 exemplar peatlands relative to climatic drivers, as this is an important mechanism by which peatland water tables self-regulate. We will then model fine-scale water flows across these 15 landscapes to estimate how climate, vegetation and water flows interact in peatlands.
Second, using the above observations and models we will develop and test a peatland version of a regional- to global-scale model: the Joint UK Land-Environment Simulator (JULES). JULES can model what happens to our environment under climatic change across the globe, but currently is unable to deal with peatlands.
Finally, with the new JULES-PEAT model, we will be able to predict how UK and European peatlands will behave under climate change and current land use, and what strategies should be taken to minimise future carbon losses. We will develop scenarios of such strategies with our project partners and run a series of international workshops to compare the new JULES-PEAT model against other global climate models, in order to advance better global forecasting of climate change effects on peatlands as a whole and to find the best possible future management solutions for peat soils to mitigate climate change. Working with partners with UK/EU policy links, this will provide solid data for future peatland policies and management on the ground.
The primary means by which peatlands are damaged is drainage, which lowers the water table. This changes how peatlands function, and as a consequence, such areas switch from carbon sinks to carbon sources. Around the world, 10-15% of all peatlands have been impacted by drainage and by use as cropland, production forests, and grazing. In the UK and more widely across Europe, so many peatlands have been altered that >50% of former peat accumulating habitat has been lost.
As part of the effort to reduce global emissions, governments across Europe have invested significant sums in peatland restoration efforts, however it is unclear whether these efforts will be successful in the light of climate change, particularly increasing global temperature and changes to rainfall patterns. In this project, we will investigate whether degraded peatlands differ from natural peatlands in the way they react to climate change. Using sites across the European climate gradient, we will examine what effect variations in weather over several years have on GHG emissions from natural and disturbed peatlands. Using a regional-to-global scale model to simulate future weather to 2100, we will use our new information to enable better policy decisions to sustainably manage peatlands. This will be achieved in the following way:
First, we will determine how differences in climate and management affect how peatlands function, using measurements from 44 micrometeorological stations and thousands of satellite (Earth Observation) data points across Europe. The satellite data will enable us to understand processes on a far larger landscape scale than the field data. We will also use satellite data to determine the physical up-and-down movement of 15 exemplar peatlands relative to climatic drivers, as this is an important mechanism by which peatland water tables self-regulate. We will then model fine-scale water flows across these 15 landscapes to estimate how climate, vegetation and water flows interact in peatlands.
Second, using the above observations and models we will develop and test a peatland version of a regional- to global-scale model: the Joint UK Land-Environment Simulator (JULES). JULES can model what happens to our environment under climatic change across the globe, but currently is unable to deal with peatlands.
Finally, with the new JULES-PEAT model, we will be able to predict how UK and European peatlands will behave under climate change and current land use, and what strategies should be taken to minimise future carbon losses. We will develop scenarios of such strategies with our project partners and run a series of international workshops to compare the new JULES-PEAT model against other global climate models, in order to advance better global forecasting of climate change effects on peatlands as a whole and to find the best possible future management solutions for peat soils to mitigate climate change. Working with partners with UK/EU policy links, this will provide solid data for future peatland policies and management on the ground.
Publications
Cowan N
(2025)
Measuring Fluxes of Nitrous Oxide (N2O) From an Intensively Farmed Wasted Peatland Field in the UK Using the Eddy Covariance Method.
in Global change biology
Coyle M
(2023)
UK GHG Flux Network - Peatlands
D'Acunha B
(2026)
Drained Agricultural Peatlands as Persistent Carbon Sources: Implications for Carbon and Water Use Intensity in Food Production
in Global Change Biology
D'Acunha B
(2026)
Drained Agricultural Peatlands as Persistent Carbon Sources: Implications for Carbon and Water Use Intensity in Food Production.
in Global change biology
Evans C
(2024)
Biomethane produced from maize grown on peat emits more CO2 than natural gas
in Nature Climate Change
Gherca W
(2025)
Biometeorological feedbacks on peatlands: Raising the water table to reduce meteorologically-related stress on cattle
in Agricultural and Forest Meteorology
Lloyd I
(2023)
State of Knowledge on UK Agricultural Peatlands for Food Production and the Net Zero Transition
in Sustainability
Lloyd I
(2024)
Maize grown for bioenergy on peat emits twice as much carbon as when grown on mineral soil
in GCB Bioenergy
Mena-Rivera L
(2025)
Wildfires Impact the Thermal Stability and Molecular Composition but Not the Age of Dissolved Organic Carbon Exported by Northern Streams
in Journal of Geophysical Research: Biogeosciences
| Description | The measurements made on 4 peat bogs in Northern Ireland have been discussed with two senior scientific advisors in the Northern Ireland Department of Agriculture, Environment and Rural Affairs (DAERA). The measurments show that these 4 peat bogs are largely functioning as net carbon and GHG sinks. Even the extensively grazed blanket bog retained its peat-forming character, and the rewetted raised bog are shown to be a net carbon sink again after four years of restoration. These findings confirm that investing in high water levels and promoting the establishment of peat-forming vegetation are effective strategies for protecting and enhancing the large volumes of carbon stored as peat, thereby mitigating anthropogenic climate change. |
| First Year Of Impact | 2026 |
| Sector | Environment |
| Impact Types | Policy & public services |
| Description | Peatland Code Version 2.0 |
| Geographic Reach | National |
| Policy Influence Type | Contribution to new or improved professional practice |
| Impact | Renée Kerkvliet-Hermans, Peatland Code Co-Ordinator at IUCN Peatland Programme said "I am delighted that we have been able to expand the Peatland Code to include more lowland peat habitats such as fens, and I expect we will see a lot more restoration projects getting underway as a result of these changes". |
| URL | https://www.iucn-uk-peatlandprogramme.org/peatland-code/introduction-peatland-code |
| Description | Capturing transitional changes in GHG fluxes post restoration |
| Amount | £200,000 (GBP) |
| Organisation | Department For Environment, Food And Rural Affairs (DEFRA) |
| Sector | Public |
| Country | United Kingdom |
| Start | 12/2025 |
| End | 03/2028 |
| Description | The permanence of carbon sequestered in restored peatlands in a changing climate |
| Amount | £80,000 (GBP) |
| Funding ID | NETL 112 |
| Organisation | Department For Environment, Food And Rural Affairs (DEFRA) |
| Sector | Public |
| Country | United Kingdom |
| Start | 08/2025 |
| End | 03/2026 |
| Title | JULES Fluxnet suite |
| Description | Derived data from measurements made at 9 UK flux sites have been prepared for use in the Fluxnet suite used by the JULES land surface modelling community (u-al752, https://code.metoffice.gov.uk/trac/roses-u/browser/a/l/7/5/2/trunk, revision 341614). Other inputs required to run JULES at the UK sites are included in the suite. Note: A JULES user account is needed to access JULES and the suite. |
| Type Of Material | Computer model/algorithm |
| Year Produced | 2025 |
| Provided To Others? | Yes |
| Impact | Available for use by the JULES land surface modelling community for model development and evaluation. |
| URL | https://code.metoffice.gov.uk/trac/roses-u/browser/a/l/7/5/2/trunk |
| Description | Advisory board, Dutch NOBV peatland project |
| Organisation | Deltares |
| Country | Netherlands |
| Sector | Private |
| PI Contribution | Chris Evans was appointed as a member of the international scientific advisory board of the Dutch NOBV peatland project, and has attended two meetings and field site visits in the Netherlands. The project is developing methods to quantify GHG emissions from agriculturally managed peatlands, including a significant contribution from ditches and canals, using a combination of flux towers and floating chambers, so the engagement has led to a two-way exchange of methods, results and ideas. The project involves engagement with Dutch government and farming representatives and also other international researchers working on this topic. |
| Collaborator Contribution | See previous response. A member of the NOBV team attended the Fenland Soil conference in Ely, April 2023 |
| Impact | Collaboration has led to ongoing engagement on measurement methods, mitigation options and comparison of results |
| Start Year | 2022 |
| Description | Advisory board, German MoMoK project |
| Organisation | Thünen Institute of Forest Ecosystems |
| Country | Germany |
| Sector | Public |
| PI Contribution | Chris Evans is a member of the MoMoK project international scientific advisory board. The role includes participation in meetings, exchange of methods for assessment of peatland soils and measurement of GHG emissions, results and ideas, and ongoing collaboration on joint research and publications. |
| Collaborator Contribution | The MoMoK methods for field-scale soil carbon assessment were shared with the UK team. A member of the MoMoK team attended the Fenland Soil conference in Ely in April 2023. |
| Impact | Ongoing collaboration on peatland monitoring, mitigation of GHG emissions and translation of science into policy and land-management decision-making |
| Start Year | 2022 |
| Description | Advisory board, German Wetscapes 2.0 project |
| Organisation | University of Greifswald |
| Country | Germany |
| Sector | Academic/University |
| PI Contribution | Chris Evans is a member of the advisory board for this new national-scale German project which seeks to understand and sustainably manage the novel wetland ecosystems created following restoration of former farmland on lowland peat in Germany. |
| Collaborator Contribution | Knowledge sharing between projects studying areas of lowland peat in England and Germany with similar land-use histories, ecology, greenhouse gas emissions and socio-economic challenges, involvement in joint publications |
| Impact | Temmink et al (2026) - see publications. |
| Start Year | 2025 |
| Description | Greifswald Mire Centre (University of Greifswald) - MOTHERSHIP consortium |
| Organisation | University of Greifswald |
| Country | Germany |
| Sector | Academic/University |
| PI Contribution | JHI are providing peat extent data from upscaled field observations and modelling to allow future upgrades to the Peatland Map of Europe. JHI are also modelling peat water table depth dynamics and providing the outputs to UG. |
| Collaborator Contribution | Greifswald partners have given us access to the Peatland Map of Europe data product and will be giving us access to the Global Peatland Database, inclusive of negotiating access to country-specific data, which are forming the basis of e.g. the golden site selection for WP3, the extent of the condition modelling for WP2, and the spatial data mask over which the JULES-PEAT model will be run in WP4-6. UG have also provided observed water table dynamics datasets for the purpose of training and validating the EO-based water table model in WP2. |
| Impact | Aided in site selection for the initial golden sites (Objectives 7 and 8, WP3). |
| Start Year | 2022 |
| Description | Met Office (ISIMIP and tropical peatland implementation) |
| Organisation | Meteorological Office UK |
| Country | United Kingdom |
| Sector | Academic/University |
| PI Contribution | The WP4 and WP6 research teams are working with the Met Office and other partners on a new ISIMIP protocol for a Peat sector. The majority of the input to the new protocol (see URL) was handled by the MOTHERSHIP Exeter team, with some limited input to draft text from the Hutton lead project co-ordinator. |
| Collaborator Contribution | The Met Office partners shared expertise and input to the new ISIMIP3 peat protocols. |
| Impact | No outputs uet |
| Start Year | 2022 |
| Description | IUCN UK Peatland Conference: 'Peatlands, People and Nature'. |
| Form Of Engagement Activity | Participation in an activity, workshop or similar |
| Part Of Official Scheme? | No |
| Geographic Reach | National |
| Primary Audience | Professional Practitioners |
| Results and Impact | This conference is for everyone with an interest in peatlands, from land managers to policy makers and scientists to restoration practitioners, to share their knowledge, experience and seek solutions to the twin crises of climate change and biodiversity loss. Members of the UKCEH project team used this conference to engage with land managers and agencies involved in peatland restoration. |
| Year(s) Of Engagement Activity | 2024 |
| URL | https://www.iucn-uk-peatlandprogramme.org/events/iucn-uk-peatland-programme-conference-2024 |
| Description | Joint iLEAPS-OzFlux Open Science Conference |
| Form Of Engagement Activity | Participation in an activity, workshop or similar |
| Part Of Official Scheme? | No |
| Geographic Reach | International |
| Primary Audience | Professional Practitioners |
| Results and Impact | iLEAPS held its sixth open science conference, jointly with OzFluz (the regional FluxNET network for Australia and New Zealand) on "Biosphere-Atmosphere interactions and Global Change from microbial to planetary scales". The conference was held at the Auckland University of Technology, with ~90 in person delegates and a further 30 attendees participating on line. Sessions were held on topics related to (a) Terrestrial emissions to the Atmosphere; (b) Land-atmosphere interactions; (c) Impacts of Global Change drivers on ecosystems; (d) Scientific advances from long-term flux monitoring and networks; (e) Remote sensing; and (f) Land-use change and Net zero - Science to support the Paris agreement. New contacts were made and new collaboration opportunities were identified. |
| Year(s) Of Engagement Activity | 2023 |
| URL | https://www.ileaps-ozflux2021.org/ |
| Description | WP1 Exploring the Future of Lowland Agricultural Peat Conference |
| Form Of Engagement Activity | A talk or presentation |
| Part Of Official Scheme? | No |
| Geographic Reach | Local |
| Primary Audience | Industry/Business |
| Results and Impact | An interactive cross industry two day workshop event to bring together those with an interest in the future of lowland agricultural peat. We presented a poster and also spent 2 days engaging with farmers and other people interested in the future of lowland peat agriculture. |
| Year(s) Of Engagement Activity | 2023 |
| URL | https://www.eventbrite.co.uk/e/exploring-the-future-of-lowland-agricultural-peat-workshop-2023-ticke... |
| Description | WP1 Food/Net Zero Nexus in the Fens Workshop |
| Form Of Engagement Activity | Participation in an activity, workshop or similar |
| Part Of Official Scheme? | No |
| Geographic Reach | Local |
| Primary Audience | Professional Practitioners |
| Results and Impact | The purpose of this workshop was to envision potential alternatives to the current unsustainable land use systems of the Fens. We considered the environmental, financial, social, and technological implications of possible future scenarios of Fens management, with a view to identifying pathways to a net zero agrifood future that maintain the role of the Fens for food security, whilst transforming the land into a net sink of greenhouse gases and facilitating biodiversity net gain. Overall, the aim of the workshop was to map the research landscape to review the state of the art in land management and potential alternative land use scenarios of the Fens, and to identify knowledge gaps and innovative ways to reduce emissions. The main output of the workshop was a review paper, many workshop contributors were co-authors of the publication. |
| Year(s) Of Engagement Activity | 2023 |
| URL | https://www.paludiculture.org.uk/_files/ugd/4051ed_1177dc5bf05649dfbf3fc6ff1b179ebf.pdf |
| Description | Wales Climate |
| Form Of Engagement Activity | Participation in an activity, workshop or similar |
| Part Of Official Scheme? | No |
| Geographic Reach | Regional |
| Primary Audience | Professional Practitioners |
| Results and Impact | As part of the session on the National Peatland Action Programme in Wales, hosted by Natural Resources Wales (Day 1: 16:30-17:30), a project team member described the success of the Life Welsh Raised Bog project at Cors Caron. Measurements from the Mothership project informed the activity. |
| Year(s) Of Engagement Activity | 2024 |
| URL | https://www.climateweek.gov.wales/EN/pages/Virtual_Conference_2024 |
