Networking for Nature

Similar documents
The integration of management and monitoring at Kenfig SAC. Clive Hurford

Dune habitat conservation status assessment review

Chapter 7 Case study. Sand dune coastal environment: Studland Bay

SIF_7.1_v2. Indicator. Measurement. What should the measurement tell us?

Coastal Environment. Introduction. 4.1 Coastal Environment. Extent of Coastal Environment

CORE MANAGEMENT PLAN INCLUDING CONSERVATION OBJECTIVES FOR GRASSHOLM SPA

Biodiversity indicators for UK habitats: a process for determining species-weightings. Ed Rowe

Ballinskelligs Bay and Inny Estuary SAC (site code 335) Conservation objectives supporting document -coastal habitats

The eco-hydrology of wet dune slacks: experience from Winterton Dunes, Norfolk

Creating ponds for Marsh Clubmoss Lycopodielle inundata

Tiree s great yellow bumblebee project

PEKA PEKA FIVE YEAR RESTORATION PLAN

Environmental Studies

Dynamic and Succession of Ecosystems

Restoration efforts required for achieving the objectives of the Birds and Habitats Directives

Revisiting Juncus balticus Willd. in England

Connecticut Coastal Management Program

Record significant damage to vegetation by M. Alexander, E. Stubbings and B. Bueche

Marsh Club-moss Lycopodiella inundatum at Stedham and Iping Commons Graeme Lyons January 2013

Ecological Response Units Ecosystem Mapping System for the Southwest US

Crossword puzzles! Activity: stratification. zonation. climax community. succession. Match the following words to their definition:

Ecological networks and coherence according to article 10 of the Habitats Directive

Flood Risk Mapping and Forecasting in England

SEARCHING FOR SEDIMENT SOURCES IN SPRING CREEK

RESTORING ACTIVE BLANKET BOG IN IRELAND Project reference: LIFE02NAT/IRL/8490

Quantifying effects of oil on coastal dune vegetation. Thomas Miller and Elise Gornish Biological Science, Florida State University

ACRONYMS AREAS COUNTRIES MARINE TERMS

The role of macrophytes in Ladoga Lake ecosystems

7.34 Spartina (Spartina anglica)

IUCN Red List Process. Cormack Gates Keith Aune

Simon Berkowicz. Biological Soil Crust Recovery in a Dryland Ecosystem. Arid Ecosystems Research Centre Hebrew University of Jerusalem

2016 No. 410 (W. 128) WATER, ENGLAND AND WALES. The Water Supply (Water Quality) (Amendment) Regulations 2016

North Dublin Bay SAC (site code 206) Conservation objectives supporting document -coastal habitats

Coastal dunes development on an industrial port complex, the example of the Port of Dunkirk, Northern France

1. Introduction and Countryside Survey Methodology

Ecology for Planting Design - understanding long-term plant performance. (C) Noel Kingsbury 2016

UWE has obtained warranties from all depositors as to their title in the material deposited and as to their right to deposit such material.

The mapping of habitats: an indispensable tool to the planning and management of protected areas in Catalonia

Favourable Condition of Blanket Bog on Peak District SSSIs. Richard Pollitt Lead Adviser, Conservation & Land Management, Dark and South West Peak

Kenfig Dune Rejuvenation Works Topographic Survey Report

WELCOME & INTRODUCTION

SHORELINE MANAGEMENT PLAN FOR OWEN ANCHORAGE AND COCKBURN SOUND SHORELINE MONITORING PLAN

Controlling Processes That Change Land

Restoring Meanders to Straightened Rivers 1.7 Reconnecting remnant meanders

Chapter 3 Populations and interactions

Description This type exists as two distinct communities:

Ecology and evolution of clonal integration in heterogeneous environment

Natura 2000 in the marine environment: state of implementation and next steps

Quite often plants are seen as the background against which the more interesting (animal) wildlife occurs. After all, often, when we use the word

Scotland s centre of expertise for waters. Dynamic Coast - National Coastal Change Assessment: Defence Asset Database

Annual transport rates at two locations on the fore-slope.

Progress Report Year 2, NAG5-6003: The Dynamics of a Semi-Arid Region in Response to Climate and Water-Use Policy

Edmonton International Airport

Discussion paper on spatial units

COMMENTS ON THE CONSERVATION STATUS OF SENECIO VELLEIOIDES (FOREST GROUNDSEL) IN TASMANIA

NATTERJACK TOAD Bufo calamita

Coastal Guide ICZM Information System

Survey and analysis of vegetation and hydrological change in English dune slack habitats

1. Case Study: Senescence of Kwongan Heath

Edmonton International Airport

NORTH PARK QUARRY COMMUNITY LIAISON MEETING NOTES OF MEETING HELD ON WEDNESDAY 24 th OCTOBER 2012 AT GODSTONE CLUB

Salix are the UK s largest grower of native wetland and wildflowering plants in the UK.

Cahore Polders and Dunes SAC (site code: )

working today for nature tomorrow The practical implementation of marine spatial planning - understanding and addressing cumulative effects

Air Quality Modelling under a Future Climate

QU: Where does sand do jail time? AIM: To explain the sediment cell concept as a system and what human and natural factors create/upset a dynamic

Carbon Sequestration Potential from Coastal Wetlands Restoration Sites

The floristics and conservation status of sand-dune communities in Wales

CHAPTER 4-3 ADAPTIVE STRATEGIES: PHENOLOGY, A SPHAGNUM CASE STUDY

26 Coastal erosion and accretion

BUTE MAP 6: GARROCH HEAD to STRAVANNAN BAY

VEGETATION BEHAVIOR AND ITS HABITAT REGION AGAINST FLOOD FLOW IN URBAN STREAMS

Mapping wildness in Scotland s Countryside: a beginner s guide

BEC Correlation BGxh2 01, 02, 05, 06. Site Characteristics

Natural Resource Management. Northern Tasmania. Strategy. Appendix 2

Butterfly Report

Climate Change & Alpine Plants:

Stamp Area. Biology - Note Packet #55. Major Climate Change ( ) What are some causes of major changes (or disruptions) in an ecosystem?

Raven Point Nature Reserve SAC (site code 710) Conservation objectives supporting document coastal habitats

Land Data Assimilation for operational weather forecasting

Dam Removal Analysis Guidelines for Sediment

Ecological mapping using satellite imagery: an Abu Dhabi case study Middle East Geospatial Forum 16 th February 2015

A Natura 2000 Monitoring Framework Using Plant Species Gradients for Spectral Habitat Assessment

Annual algae communities on Baltic infralittoral coarse sediment

Understanding and fighting the invasion of Spartina densiflora Humboldt Bay (California, USA) & the Gulf of Cádiz (Andalusia, Spain)

5.2. Historic heritage. Photo: Vaughan Homestead, Long Bay Regional Park, Auckland. (Source: ARC). Historic heritage

SMALL-SCALE SPATIOTEMPORAL DYNAMICS

III. Acropora coral habitat distribution

Killala Bay/Moy Estuary SAC (site code 458) Conservation objectives supporting document -coastal habitats

Mweelrea/Sheeffry/Erriff Complex SAC (site code: )

APPENDIX E. GEOMORPHOLOGICAL MONTORING REPORT Prepared by Steve Vrooman, Keystone Restoration Ecology September 2013

Towards the development of a Nitrogen Deposition Decision Framework for vegetation assessment in Scotland

Coastal Processes 101. Greg Berman (Woods Hole Sea Grant & Cape Cod Cooperative Extension)

Resolution XIII.23. Wetlands in the Arctic and sub-arctic

Programmatic Approaches to Assessing and Mitigating Risk to Pipelines from Natural Forces

THE ARFORDIR COASTAL HERITAGE SITE RECORDING FORM

MISSISSIPPI COASTAL IMPROVEMENTS

Strategies for biodiversity conservation

Appendix A.8.21 Lackagh Quarry Petrifying Spring Survey Results

INTERACTIONS BETWEEN TOURISM, BIODIVERSITY AND CLIMATE CHANGE IN THE COASTAL ZONE

Transcription:

Networking for Nature

A model for conservation monitoring and its practical application on Natura 2000 sites in Wales Clive Hurford Countryside Council for Wales

Different types of investigation Natural history recording, which contributes to historical archives; Research, which increases our knowledge about a species or habitat, perhaps through ecological modeling, population viability analysis or demographic studies; Experimental management, which tests the effects of different management practices; Environmental impact assessment, which assesses the likely effects of a development or incident; Survey, which is typically a one-off descriptive exercise, perhaps to describe the habitats on a site or to map the distribution of a species; Surveillance, which is a repeatable survey, often used to detect trends in habitats, populations and environmental change; and Conservation monitoring (as defined by Hellawell), which is intermittent (regular or irregular) surveillance carried out in order to ascertain the extent of compliance with a predetermined standard. This presentation focuses on the last of these: conservation monitoring

Different types of question How is the Liparis loeselii population changing? Do we have enough plants of Liparis loeselii? Surveillance Conservation monitoring What is the size of the Liparis loeselii population? Survey

A model for practical nature conservation Condition Favourable condition Unfavourable condition Favourable condition Upper limit Recovery target Lower limit Maintained Recovered Maintained Favourable Time Unfavourable

Phase I of the cycle When the condition of the feature is favourable Condition Upper limit Lower limit Favourable Time Where the upper and lower limits are set at the point you would become concerned, not at the point where the damage is irreparable

The management cycle for habitats or species in favourable condition Develop condition indicators and set lower limit Start here Next monitoring cycle Maintenance management Yes Monitor against lower limit Above lower limit? No Switch to restoration management cycle

Phase II of the cycle When the condition of the feature is unfavourable Condition Recovery target Favourable Time Unfavourable

The management cycle for habitats or species in an unfavourable state Develop condition indicators for restoration and set recovery target Start Here Switch to maintenance management cycle Monitor against recovery target Above recovery target? Yes No Carry out restoration management Yes Confident in restoration management? No Set up experimental management projects

An example of surveillance - of Emberiza citrinella in the Krkonoše National Park Pairs of Emberiza citrinella Time

And if we apply the conservation monitoring model to the same dataset. Pairs of Emberiza citrinella At this point we would make a management response Time

However, before we can apply this model, we must make some difficult decisions, such as: What do we want? Where do we want it? And, critically, from a conservation monitoring perspective, How will we know when we have got it? In other words, what evidence do we need to collect to determine whether or not the management has achieved its aims? In CCW conservation projects, this information is typically found in the Performance indicators or Condition indicators.

A short case study from Kenfig SAC

The location of Kenfig SAC

Kenfig SAC Kenfig SAC comprises two National Nature Reserves, the coastal dune systems at Kenfig NNR and Merthyr Mawr NNR; The SAC is designated for three Annex I habitats: Humid dune slacks (2190); Dunes with Salix arenaria (2170): and Fixed coastal dunes with herbaceous vegetation (2130); The SAC is also noted for two Annex II species: Liparis loeselii (at Kenfig NNR only) and Petalophyllum ralfsii (at both sites); Kenfig NNR, the larger of the two sites at 602 ha, holds more than 10% of the humid dune slack resource in the UK and more than 50% of the UK Liparis loeselii population (100% of L.loeselii var. ovata); Both Annex II species occupy the successionally-young stages of dune slack formation

Embryo dune slack vegetation at Kenfig NNR

Humid dune slack habitat at Kenfig NNR

Liparis loeselii Petalophyllum ralfsii

Major factors contributing to the loss of conservation interest at Kenfig NNR Habitat succession in the absence of active sand accretion is resulting in a decline in the extent and distribution of successionally-young habitats, with the rate of succession perhaps driven by atmospheric nitrogen deposition Offshore dredging and intertidal sand extractions have reduced the potential for sand accretion A decline in summer storms is limiting the scope for scouring by windblown sand Rabbit numbers continue to decline through myxomatosis Until recently, an open access policy prevented the use of fencing for livestock Optimum levels of stock grazing are difficult to achieve Increased visitor pressure and dog walking has restricted stock grazing to the north of the site Habitat succession in the absence of active sand accretion is the principal threat to the conservation interest at Kenfig SAC

Kenfig in the mid 1940s At this time, bare sand represented 45% of the site area

Kenfig in the period from 2000-2006 before Liparis habitat restoration work started By 2006, bare sand habitats at Kenfig represented < 3% of the dune system, and young humid dune slack habitat was limited to only a few m 2 At this time, with the exception of a few plants, Liparis was restricted to areas of closed slack vegetation kept short by annual mowing

Developing the condition indicators for the humid dune slack habitat at Kenfig The condition indicators for the humid dune slack habitat at Kenfig had to take account of the following: The extent and distribution of the different seral stages of the habitat; The requirements of the Annex II species associated with the habitat; The requirements of any nationally important species associated with the habitat, e.g. Colletes cunicularius, a species of Hymenoptera which is strongly associated with mature Salix repens. Because the condition indicator table describes the evidence that we will be collecting to assess the condition of the humid dune slack habitat, we must clearly define the contents of the condition indicator table in terms that are not open to interpretation. This ensures that the monitoring project is entirely transparent.

The condition indicators in the year 2000 Performance indicators For when the condition of the habitat is favourable The humid dune slack habitat at Kenfig will be in favourable condition when Quality Lower limit In Section 1 (See map) >30% of the dune slack sampling points in Area Y and >45% of the dune slack sampling points in Area Z are either embryo or successionally-young slack vegetation and In Section 1 outside of Areas Y and Z at least 8 dune slacks of >0.5ha, and at least 4 dune slacks of >0.25ha have vegetation where >70% of sampling points are either successionally-young or orchid-rich slack vegetation Site specific habitat definitions Dune slack vegetation Successionally-young dune slack vegetation Moist vegetation on level ground between sloping dunes, typically with Salix repens present. Bare soil and thalloid liverworts present, and at least 4 of the following present: Carex viridula ssp. viridula, Juncus articulatus, Anagallis tenella, Samolus valerandi, Eleocharis quinqueflora, Ranunculus flammula, Liparis loeselii, within any 50cm radius None of the following present: Phragmites australis, Molinia caerulea, Calamagrostis epigejos within any 1m radius Embryo slack vegetation 25-50% open ground with Salix repens forming clonal patches, and at least two of Carex arenaria, Sagina nodosa or Juncus articulatus present within any 1m radius Orchid-rich dune slack vegetation At least 2 of the following present: Epipactis palustris, Dactylorhiza incarnata, Gymnadenia conopsea, Pyrola rotundifolia, in any 50cm radius and None of the following present: Phragmites australis, Molinia caerulea, Calamagrostis epigejos within any 1m radius

Rationale behind the condition indicators The primary conservation interest at Kenfig centres on the embryo and successionally-young dune slack vegetation, as this supports the populations of Petalophyllum ralfsii and Liparis loeselii; The condition indicator table identifies two areas for sampling: Areas Y and Z; These were selected because, in the year 2000, they were the areas most likely to meet the criteria for favourable condition; Therefore, if these areas failed to meet the targets we could assume that everywhere else on the site would also fail; This assumption holds true because these areas include the youngest examples of dune slack vegetation at Kenfig; Note: The surveyor needs the skill to recognise only 21 species : and The dune slack monitoring will take one surveyor two days to complete

The sampling method Non-random orientation; Random start point Presence of A with >10% cover At every point located by GPS Presence of wanted / unwanted species and / or Presence of cover psueudospecies

Monitoring results in the reporting period to 2006 Dune slack results Area Y Area Z Kenfig total No of sampling points 89 53 142 Embryo dune slack 3 0 3 Successionally-young slack 2 4 6 % passes 6% 8% Lower limit 30% 45% Condition status Unfavourable Unfavourable

Typical dune slack vegetation at Kenfig in 2006

As a consequence of the monitoring results A programme of regular close mowing has been carried out in several dune slacks to create shortterm habitat for Liparis loeselii After many years of negotiation, a fence has been erected to enable controlled grazing in the north of the site, and In 2008, a five-year programme of excavation work was initiated to create at least 5 ha of new humid dune slack vegetation for Petalophyllum and Liparis

Kenfig in September 2012 We are now in the fifth year of the Liparis habitat restoration work at Kenfig, and in the next few months a meeting is scheduled to revise the condition indicators and to decide whether further restoration work is needed and, if so, how much and where.

Successes in 2012. In 2012, both Liparis loeselii and Petalophyllum ralfsii colonised restoration areas that had been created since 2010

And finally. Grazie per la vostra attenzione