Long-term climate, vegetation and fire regime change in a managed municipal water supply area, British Columbia, Canada

Journal Article (2019)
Author(s)

K. J. Brown (University of British Columbia)

Nicholas J. Hebda (University of British Columbia)

Gerrit Schoups (TU Delft - Water Resources)

N. Conder (Canadian Forest Service)

K. A.P. Smith (Canadian Forest Service)

J. A. Trofymow (University of Victoria)

Research Group
Water Resources
DOI related publication
https://doi.org/10.1177/0959683619854523
More Info
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Publication Year
2019
Language
English
Research Group
Water Resources
Issue number
9
Volume number
29
Pages (from-to)
1411-1424

Abstract

Post-glacial climate, vegetation and fire history were reconstructed from a sediment record from Begbie Lake, British Columbia, Canada, located in a municipal water supply area servicing > 350,000 people. Watershed managers have identified wildfire as a threat to water supply and seek to understand how vegetation and fire have varied through time with climate. In the cold late-glacial, open Pinus woodlands, periodically disturbed by fire, transitioned to mixed conifer forests subject to high-severity fire. The early Holocene is of interest to watershed managers because climate was warmer and drier than present. During this interval, low streamflow, abundant fire-adapted taxa, elevated background charcoal and regional increases in biomass burning indicate that fire seasons were longer and that fire was an important disturbance mechanism. Climate moistened in the mid Holocene, facilitating canopy closure and decreased fire disturbance. However, surface fires prevailed in Quercus ecosystems, which were expanding locally. Charcoal increased between 6180–2500 cal yr BP as climate further cooled and moistened, likely reflecting human activity and/or increased climate variability. Modern conditions arose within the last few millennia, impacted most recently by European settlement. In combination with paleoclimate modelling, modern management practices and forecast simulations, the Begbie Lake record informs about ecosystem changes within the watershed, yielding insights for management.

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