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Watershed Planning within a Quantitative Scenario Analysis Framework
Published on: July 24, 2016
A Quantitative Approach to Biodiversity Offset Multipliers: Managing Uncertainty in Complex Projects
Adam S van der Lee1, Madison E Brook2, Marten A Koops2
1Fisheries and Oceans Canada, Great Lakes Laboratory for Fisheries and Aquatic Sciences, Burlington, ON, Canada. adam.vanderlee@dfo-mpo.gc.ca.
Abstract:
Biodiversity offsetting is a widely used strategy to mitigate residual environmental impacts from development projects, with the objective of achieving No Net Loss (NNL). However, offsetting efforts are often undermined by uncertainty in outcomes, time delays in implementation, and inconsistent valuation methods. We present a robust, quantitative framework for calculating biodiversity offset multipliers that explicitly incorporate uncertainty across multiple offsets within a project. Building on previous work, we model offsets and impacts as stochastic values and apply Monte Carlo simulations to estimate risk-based multipliers. This framework allows for strategic allocation of compensation using a weighting parameter, enabling proponents to optimize offset investments based on the costs and reliability of offsets. Simulation results demonstrate that the proposed method consistently meets defined risk tolerance thresholds across a range of ecological scenarios. By providing a transparent and adaptable tool, this approach can enhance regulatory defensibility, support timely and credible offset approvals, and strengthen the ecological integrity of NNL outcomes.
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