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Local Management of Water Catchments: Drawing on International Experience

Local Management of Water Catchments: Drawing on International Experience. Laurence Smith, Imperial College London Kevin Hiscock, University of East Anglia Research on Rural Resource Management and the Rural Economy: Addressing the Local Dimension

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Local Management of Water Catchments: Drawing on International Experience

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  1. Local Management of Water Catchments: Drawing on International Experience Laurence Smith, Imperial College London Kevin Hiscock, University of East Anglia Research on Rural Resource Management and the Rural Economy: Addressing the Local Dimension Royal Society of Edinburgh, Wednesday 16th May 2007.

  2. Work to date • “Building Alliances for a RELU Capacity Building Programme: Exploiting Options from the Eastern US and Nearby European Continent” • capacity building award, July 2004 to August 2005 • development of a ‘network” of water professionals in the UK, US and nearby Europe • built capacity for evaluation of transferable catchment management measures to protect water quality, from Eastern US and nearby Europe • integrated understanding of technical, economic, social and institutional and governance aspects (including participation of catchment communities) • identification of a research agenda for evaluation under a RELU research project.

  3. Catchment management: a ‘wicked problem’? • In natural resource management a ‘wicked problem’ is characterised by: • contradictory, complex problems • clusters of interrelated problems • high levels of uncertainty • diverse competing values and interests • many production and consumption externalities • requirement for trade-offs and multiple decision criteria • a solution for one group generates problems for another • intractable for any single organisation.

  4. The challenges of diffuse water pollution • farming is the main source, but also produces food, sustains rural communities and creates landscape attributes • pollution sources are numerous, dispersed and sometimes uncertain, thus the costs of regulation are high • the ‘polluter pays’, the ‘consumer pays’, or costs are shared? • solutions require a ‘tailored’ mix of regulation, policies, voluntary action and direct interventions.

  5. Alternative models for water governance • The aim is to protect and manage water resources in a catchment in which people can live, work and play. • Centralised and monocentric • Local autonomy • Decentralised, polycentric and multi-stakeholder

  6. An example: The New York City Watershed and the Delaware County Action Plan (DCAP)(watershed = catchment) • Key features: • multi-level, multi-stakeholder, adaptive approach, with local leadership and strong legitimacy and accountability • initiated locally in response to threat of regulation and loss of local autonomy • a strong scientific base, effective use of monitoring and modelling, and initial focus on best farm management practices • wider catchment measures beyond farms.

  7. New York City Water Supply System

  8. Delaware County Action Plan • Cannonsville Reservoir Basin – agricultural basin • New York City water supply • P ‘restriction’ impedes economic growth of county

  9. The Cannonsville Reservoir

  10. 3 Barriers: Redundancy Source Landscape Stream Corridor

  11. Precision FeedManagement

  12. DCAP Component Stream Corridor Management

  13. On-Site Septic Systems

  14. HighwayRunoff

  15. MonitoringStations

  16. DCAP Partners DCAP integrates all levels of government authority, coordinates actions at County level by agencies and other bodies, and preserves local planning prerogatives. • Local • Planning, SWCD, CCE, Eco.Dev, Farm Bureau, DPW, Communities, NRCS, Chamber, IDA, WSA • Regional • CWC, DEP, WAC • State • WRI, DEC, DOH, DOS, DOT, Ag & Mkts, NYSSWCC, Cornell, ESF • Federal • EPA, USDA, Army Corps

  17. Watershed Planning and Implementation Process load reductions, management options, assess impacts management,monitoring, outreach evaluate, report, adapt stakeholders, issues and goals, outreach data collection & analysis, pollutant loads & sources workplan, milestones, responsibilities, finance, policy US EPA , 2005

  18. Watershed planning and implementation is an iterative and adaptive process US EPA , 2005

  19. Other examples can be drawn from nearby Europe (particularly from the Water4all Project), and from wider international experience.

  20. Key lessons drawn to date • Each catchment and all sources of pollution must be analysed in an integrated and holistic way. Environmental criteria must be integrated with the economic, social and cultural goals of those affected by change. • Land management and diffuse sources of pollution have a local basis and protection of water at source needs local instruments, participation of stakeholders and an enabling regulatory environment.

  21. Future work:Developing a Catchment Management Template for the Protection of Water Resources: Exploiting Experience from the UK, Eastern USA and Nearby Europe Aresearch project financed by the RELU programme: June 2007- May 2010

  22. Project Principals and Partners: • Laurence Smith, ICL, Wye campus • Kevin Hiscock, Andrew Jordan UEA • Alastair Bailey, Kent Business School, UKC • Independent: Hadrian Cook, Alex Inman, Jon Hillman • Westcountry Rivers Trust • Tamar Lakes Catchment Project, EA, IGER • Upper Thurne Working Group and Broads Authority • New York State Water Resources Institute, Cornell University, NYS Depart. of Env. Conservation, Upper Susquehanna Coalition, • ‘Water4all’ partners including water protection programmes in Aalborg, Denmark and Oldenburg, Germany.

  23. Project Objectives • A comparative analysis of international catchment management experience: technical procedures, policies and governance arrangements • Investigation of how best to extend the scientific and policy achievements of water protection programmes in the US, other European countries and elsewhere to the UK • Detailed assessment of two case study catchments: upper Tamar, SW England and Upper Thurne, Broads • Development of a catchment management template for integration of scientific investigation with decision-making and implementation to achieve environmental, economic and social objectives.

  24. Project structure Strand A: case study catchments, Upper Tamar, Upper Thurne Strand B: comparative analysis of international catchment management programmes Stakeholders, partnerships, issues, goals, outreach needs Characterise and understand the catchment: pollutants, use of models Lessons for analysis, monitoring, governance and policy Finalise goals and test management scenarios with stakeholders, assess physical, economic and social impacts Catchment management template Assess implementation options and possible governance arrangements

  25. Thank you for listening, for more information, please contact: Laurence Smith l.smith@imperial.ac.uk Tel: 0207 5942699 Project website: http://wri.eas.cornell.edu/relu/index.php Project blog: http://catchmentmanagement.blogspot.com/

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