Climate Change Adaptation for Natural Resources in the North Atlantic Region

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Transcription:

Climate Change Adaptation for Natural Resources in the North Atlantic Region Andrew Milliken North Atlantic Landscape Conservation Coordinator U.S. Fish and Wildlife Service Preparing New Jersey for Climate Change: A Workshop for Decision Makers, November 29, 2011

Climate Change Adaptation for Natural Resources Landscape Conservation Cooperatives Background and purpose What is going on nationally and regionally How we need to address adaptation Multiple scales Incorporating all major stressors Science and tools useful for making good conservation decisions Examples of science and tools that are being developed

U.S. Fish and Wildlife Service Climate Change Strategic Plan Focus on Adaptation Landscape scale partnerships

Landscape Conservation Cooperatives: Geographic Areas

Landscape Conservation Cooperatives in the Northeast Region Northeast Region LCCs Two in New Jersey North Atlantic Appalachian Appalachian Eastern Tallgrass Prairie and Big Rivers North Atlantic South Atlantic 0 95 190 380 Miles Upper Midwest and Great Lakes

North Atlantic LCC - Mission The North Atlantic Landscape Conservation Cooperative provides a partnership in which the conservation community works together to address increasing land use pressures and widespread resource threats and uncertainties amplified by a rapidly changing climate. The partners and partnerships in the cooperative address these regional threats and uncertainties by agreeing on common goals and jointly developing the scientific information and tools needed to prioritize and guide more effective conservation actions by partners toward those goals.

Mapping Northeast Terrestrial Habitats Based on NatureServe Ecological Systems

Terrestrial Habitats

Northeast Aquatic Habitat Classification and Map This simplified map groups them into 96 types. From Very high gradient, acidic, cold headwater creek (1a_6_1_1) To Very low gradient, calcareous, warm Great River (5_1_3_3) Code = Size, Gradient, Geo, Temp

Vulnerabilities to Climate Change of Northeastern Fish and Wildlife Habitats A expert-driven predictive model of habitat vulnerability has been built This model will be consistently applied to selected habitats across the Northeast Results will provide basis for mapping geographical variation in vulnerability

Connectivity: Network Connectivity Flow Concentration Areas Based on circuit theory and McRae s circuitscape

Human Population Density by County

Northeast Region Urban Growth 1990 2000 2010 2020 2030 2040 Regional Plan Association, 2011

Purpose & Need Approach Applications Outlook Designing Sustainable Landscapes for Wildlife Decision-Support Tools for Conservation

Purpose & Need Approach Applications Outlook In the face of major threats the objective is to maximize the quantity, quality, and connectivity of habitats and ecological systems, subject to the real world socio-economic constraints of development Protect, manage & restore habitat in the right places Design landscapes to ensure connectivity Minimize forces of habitat degradation

Purpose & Need Approach Applications Outlook Utilizing complementary fineand coarse-filtered approaches Fine filter Coarse filter

Purpose & Need Approach Applications Outlook Landscape change models Now building a landscape change model to predict changes in ecological integrity and habitat capability driven by urban growth, climate change and other anthropogenic (e.g. timber harvest) and natural disturbances (e.g., fire) Projected min January temp, Kennebec watershed, SRES A2 scenario

Purpose & Need Approach Applications Outlook Model outcomes: Strategies for maximizing habitat and integrity Top 20% (plus buffer) wood turtle habitat Top 20% ecological integrity

Threats to Aquatic Systems and Species Habitat fragmentation Isolated populations Water withdrawals Seasonal effects of stream flow Land use/land change Riparian buffer, impervious surfaces Climate change Air temperature and precipitation affecting: Stream flow and temperature Interactions

Piping plover habitat and sea level rise Understand impacts of sea level rise on beach habitats (sea level rise models) Relate these changes to plover populations (locally and regionally) (plover species habitat models) Inform current and near-term decisions regarding coastal stabilization (scenarios)

Science Translation Science and tools at scale and in format that is useful to managers Guidance to increase understanding and use

Adaptation Planning and Actions for Natural Resources Local and state scales informed by regional scale Plan for systems, habitats and species Incorporate multiple drivers (e.g. climate change and urban growth) Science and tools developed and available to managers Goal: landscapes that sustain natural resources and human uses in the future

Thank You North Atlantic LCC http://www.northatlanticlcc.org/ andrew_milliken@fws.gov Appalachian LCC http://applcc.org/ jean_brennan@fws.gov