Active Climate, Earth & Environment Clean Energy

Resilience of Anthropocene Coasts and Communities (ResAnth): assessing and responding to urban and post-industrial coastal risks

In plain English

AI plain-English summary

Britain’s eroding coastline is about to release centuries of buried industrial waste into the sea, and no one knows exactly how bad the damage will be. The UK has over 1,700 historic coastal landfills and 3,000 hectares of contaminated land at risk from flooding and erosion. Many sites are already crumbling, releasing plastics, asbestos, and medical waste into coastal waters. By 2055, one in ten could erode without intervention. Yet local authorities lack the evidence to decide whether to defend, clean up, or leave these sites alone. This project fills that gap by working in three at-risk areas to measure the real pollution risk to people and marine environments under more severe flooding scenarios. If successful, the research will give coastal managers, the Environment Agency, and local authorities a practical toolkit for making defensible decisions about these sites. It will also produce a Community Atlas—a shared platform where citizens can upload stories and data about coastal change. The goal is to build resilience for communities living with the legacy of past waste disposal, while protecting protected wetlands and bathing waters from further contamination.

View original technical description
ResAnth addresses the interlinked risks of climate change, coastal flooding and erosion, and the UK's historic waste legacy for coastal community and ecosystem resilience. Coastal flooding and erosion will accelerate under climate change. Our past industrialisation has left a pollution legacy of over 1,700 historic coastal landfills and 3,000 hectares of contaminated land also at risk from coastal flooding and/or erosion (CCC 2018; POST 2021). By 2100 the number of people exposed to coastal floods and erosion, and therefore legacy coastal waste, will increase significantly and almost half legacy waste sites are within 100m of environmentally sensitive areas such as protected wetlands or bathing waters (Brand et al. 2018). Many sites are already eroding, releasing pollution, plastics, asbestos and/or medical waste into our coastal environments with limited understanding of pollution risk to people or the marine environment. Without intervention one in 10 could erode by 2055. Many UK coastal landfills are at increasing future risk e.g., at Lyme Regis, the Spittles Lane landfill contains 50,000 tonnes of waste on an eroding cliff top and will "almost certainly erode" releasing material to the beach without intervention (Nichols et al. 2020). How we manage the intergenerational burden of our past coastal waste disposal and its accelerated risk to society and ecosystems in a changing climate is a "burning imperative" (Environment Agency 2022). In a "call to arms", coastal Local Authorities have identified the enormity of this problem with almost 50% reporting waste sites eroding, or 'at risk'. Yet we do not have sufficient evidence to: 1) build robust business cases to manage (by defending, remediating or 'letting alone') these sites; 2) inform sustainable coastal management decision-making (Shoreline Management Plans) that takes account of the presence of waste; and 3) engage and support those communities who will live with these decisions. Working in 3 'at-risk' UK geographic areas we will: Investigate the risk of waste and pollution release under more severe flooding and coastal erosion scenarios. Assess the harm this pollution will do to coastal environments and adjacent communities. Increase collaboration between a range of stakeholders to understand the different kinds of environmental and social challenges involved. Facilitate inclusive debate on future efforts to manage these risks using established methods and arts-based activities to reach new audiences. Work with communities and policy makers to explore and co-develop policy options and practical actions that will build resilience, and identify potential co-benefits for people and place. Ensure the project's approach, methods and key findings for coastal resilience measures can be scaled across the UK. Assessing the range of risks associated with coastal waste release and building an inclusive and practical 'toolkit' of responses will benefit: 1) organisations who manage the coast, conserve and protect people and habitats; and 2) landowners and communities who use and appreciate the coastal environment for its amenities and cultural value. We have designed a novel 'Community Atlas' to share information, conclusions, and arts outputs with these groups, and that allows citizens to upload their own information and stories about coastal change. ResAnth has been co-conceived with our Project Partners through collaboration, in particular, with; 1) Environment Agency, local authorities, and coastal partnerships to identify research needs; 2) the Climate Change Committee and Policy Connect to understand policy gaps; and 3) engagement with communities through arts-science initiatives.

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Researchers

Andrew Russell (Co-Investigator)Deborah Dixon (Co-Investigator)James Porter (Co-Investigator)John MacDonald (Co-Investigator)Kate Spencer (Principal Investigator)Katherine Simpson (Co-Investigator)Larissa Naylor (Co-Investigator)Martin Hurst (Co-Investigator)Megan Clinch (Co-Investigator)Mingshu Wang (Co-Investigator)Minty Donald (Co-Investigator)Nick Hanley (Co-Investigator)Patrick Diamond (Co-Investigator)Rhys Kelly (Co-Investigator)Suzy O'Hara (Co-Investigator)Ute Kelly (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Legacy Wastes in the Coastal Zone: Environmental Risks and Management Futures
Coastal resilience in the face of sea-level rise: making the most of natural systems
Assessing Coastal Pollution from Legacy Waste in the UK
ARISE: Advancing Resilience and Innovation for a Sustainable Environment
Coastal landfill and shoreline management: implications for coastal adaptation infrastructure

Original classification

Research and Innovation

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.