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DOI10.1088/1748-9326/ab4f8d
Increased deep soil respiration detected despite reduced overall respiration in permafrost peat plateaus following wildfire
Gibson C.M.; Estop-Aragonés C.; Flannigan M.; Thompson D.K.; Olefeldt D.
发表日期2019
ISSN17489318
卷号14期号:12
英文摘要Wildfire in boreal permafrost peatlands causes a thickening and warming of the seasonally thawed active layer, exposing large amounts of soil carbon to microbial processes and potential release as greenhouse gases. In this study, conducted in the discontinuous permafrost zone of western Canada, we monitored soil thermal regime and soil respiration throughout the 2016 growing season at an unburned peat plateau and two nearby peat plateaus that burned 16 and 9 years prior to the study. Maximum seasonal soil temperature at 40 cm depth was 4 °C warmer in the burned sites, and active layers were ∼90 cm thicker compared to the unburned site. Despite the deeper and warmer seasonally thawed active layer, we found higher soil respiration in the unburned site during the first half of the growing season. We partitioned soil respiration into contribution from shallow and deep peat using a model driven by soil temperatures at 10 and 40 cm depths. Cumulative estimated deep soil respiration throughout the growing season was four times greater in the burned sites than in the unburned site, 32 and 8 g C m-2 respectively. Concurrently, cumulative shallow soil respiration was estimated to be lower in the burned than unburned site, 49 and 80 g C m-2 respectively, likely due to the removal of the microbially labile soil carbon in the shallow peat. Differences in deep contribution to soil respiration were supported by radiocarbon analysis in fall. With effects of wildfire on soil thermal regime lasting for up to 25 years in these ecosystems, we conclude that increased loss of deep, old, soil carbon during this period is of similar magnitude as the direct carbon losses from combustion during wildfire and thus needs to be considered when assessing overall impact of wildfire on carbon cycling in permafrost peatlands. © 2019 The Author(s). Published by IOP Publishing Ltd.
英文关键词Permafrost peatlands; Soil organic carbon; Soil respiration; Wildfire
语种英语
scopus关键词Greenhouse gases; Organic carbon; Peat; Permafrost; Temperature; Thawing; Wetlands; Discontinuous permafrost; Microbial process; Peat land; Radiocarbon analysis; Soil organic carbon; Soil respiration; Soil temperature; Wildfire; Fires; growing season; peatland; permafrost; shallow soil; soil carbon; soil respiration; soil temperature; thermal regime; wildfire; Canada
来源期刊Environmental Research Letters
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/154334
作者单位Department of Renewable Resources, University of Alberta, Edmonton, AB T6G 2R3, Canada; Natural Resources Canada, Canadian Forest Service, Edmonton, AB T6H 3S5, Canada
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GB/T 7714
Gibson C.M.,Estop-Aragonés C.,Flannigan M.,et al. Increased deep soil respiration detected despite reduced overall respiration in permafrost peat plateaus following wildfire[J],2019,14(12).
APA Gibson C.M.,Estop-Aragonés C.,Flannigan M.,Thompson D.K.,&Olefeldt D..(2019).Increased deep soil respiration detected despite reduced overall respiration in permafrost peat plateaus following wildfire.Environmental Research Letters,14(12).
MLA Gibson C.M.,et al."Increased deep soil respiration detected despite reduced overall respiration in permafrost peat plateaus following wildfire".Environmental Research Letters 14.12(2019).
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