Valuation of forest‐management and wildfire disturbance on water and carbon fluxes in mountain headwaters

Author:

Chung Min Gon12ORCID,Guo Han1ORCID,Nyelele Charity34,Egoh Benis N.3,Goulden Michael L.3,Keske Catherine M.1,Bales Roger C.1

Affiliation:

1. Sierra Nevada Research Institute University of California Merced California USA

2. Environmental Data Science Innovation and Inclusion Lab University of Colorado Boulder Colorado USA

3. Department of Earth System Science University of California Irvine California USA

4. Department of Environmental Sciences University of Virginia Charlottesville Virginia USA

Abstract

AbstractRecent drought, wildfires and rising temperatures in the western US highlight the urgency of increasing resiliency in overstocked forests. However, limited valuation information hinders the broader participation of beneficiaries in forest management. We assessed how historical disturbances in California's Central Sierra Nevada affected live biomass, forest water use and carbon uptake and estimated marginal values of these changes. On average, low‐severity wildfire caused greater declines in forest evapotranspiration (ET), gross primary productivity (GPP) and live biomass than did commercial thinning. Low‐severity wildfires represent proxies for prescribed burns and both function as biomass removal to alleviate overstocked conditions. Increases in potential runoff over 15 years post‐disturbance were valued at $108,000/km2 for commercial thinning versus $234,000/km2 for low‐severity wildfire, based on historical water prices. Respective declines in GPP were valued at −$305,000 and −$1,317,000/km2, based on an average social cost of carbon. Considering biomass levels created by commercial thinning and low‐severity fire as more‐sustainable management baselines for overstocked forests, carbon uptake over 15 years post‐disturbance can be viewed as a benefit rather than loss. Realizing this benefit upon management re‐entry may require sequestering thinned material. High‐severity wildfire and clearcutting resulted in greater declines in ET and thus greater potential water benefits but also substantial declines in GPP and live carbon. These lessons from historical disturbances indicate what benefit ranges from fuels treatments can be expected from more‐sustainable management of mixed‐conifer forests and the importance of setting an appropriate baseline.

Publisher

Wiley

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