Simple vs. Complex: Implications of Lags in Pollution Delivery for Efficient Load Allocation and Design of Water-quality Trading Programs

Author:

Shortle James,Abler David,Kaufman Zach,Zipp Katherine Y.

Abstract

Water-quality markets that allow point-nonpoint trades assume that nonpoint best management practices (BMPs) achieve the targeted reductions as soon as they are implemented. However, changes in water quality in response to BMPs occur over time—from a few months to decades. We simulate emission allocations using static and dynamic-optimization models to determine whether a simple static allocation can produce results comparable economically and environmentally to complex multi-period designs for nitrogen emissions to Chesapeake Bay. We find that static rules provide relatively large cost savings compared to dynamic rules but result in a delay in achievement of water-quality targets.

Publisher

Cambridge University Press (CUP)

Subject

Economics and Econometrics,Agronomy and Crop Science

Reference11 articles.

1. Economics and Environmental Markets: Lessons from Water-Quality Trading

2. Economic and Ecological Rules for Water Quality Trading1

3. Shortle J.S. , Z. Kaufman , D. Abler , J. Harper , J. Hamlett , and M. Royer . 2013. “Building Capacity to Analyze the Economic Impacts of Nutrient Trading and Other Policy Approaches for Reducing Agriculture's Nutrient Discharge into the Chesapeake Bay Watershed.” Report to the U.S. Department of Agriculture, Washington, DC.

4. Environmental Protection Agency. 2010. “Chesapeake Bay Phase 5.3 Community Watershed Model.” EPA 903S10002 – CBP/TRS-303-10. EPA, Chesapeake Bay Program Office, Annapolis, MD.

5. Encouraging Reductions in Nonpoint Source Pollution through Point‐nonpoint Trading: The Roles of Baseline Choice and Practice Subsidies

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