Comparison of carbon dynamics and water use efficiency following fire and harvesting in Canadian boreal forests

被引:103
作者
Mkhabela, M. S. [1 ]
Amiro, B. D. [1 ]
Barr, A. G. [2 ]
Black, T. A. [3 ]
Hawthorne, I. [3 ]
Kidston, J. [3 ]
McCaughey, J. H. [4 ]
Orchansky, A. L.
Nesic, Z. [3 ]
Sass, A. [1 ]
Shashkov, A. [5 ]
Zha, T. [2 ]
机构
[1] Univ Manitoba, Dept Soil Sci, Winnipeg, MB R3T 2N2, Canada
[2] Environm Canada, Div Climate Res, Saskatoon, SK S7N 3H5, Canada
[3] Univ British Columbia, Fac Land & Food Syst, Vancouver, BC V6T 1Z4, Canada
[4] Queens Univ, Dept Geog, Kingston, ON K7L 3N6, Canada
[5] Environm Canada, Air Qual Res Div, Toronto, ON M3H 5T4, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Boreal forest; Eddy covariance; Fire; Harvesting; Carbon exchange; Evapotranspiration; Water use efficiency; Net ecosystem production; BLACK SPRUCE FOREST; JACK PINE; DIOXIDE FLUXES; INTERANNUAL VARIABILITY; ECOSYSTEM PRODUCTIVITY; NITROGEN DEPOSITION; NPK FERTILIZATION; SOIL RESPIRATION; ENERGY FLUXES; CO2; FLUXES;
D O I
10.1016/j.agrformet.2008.10.025
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Fire and harvesting are major forest renewal processes in the Canadian boreal forest. The eddy covariance method was used to compare ecosystem fluxes of carbon dioxide between harvested and burned boreal forest sites in Saskatchewan, Canada. The harvest chronosequence had sites harvested in 2002 (HJP02), 1994 (HJP94) and 1975 (HJP75), whereas the fire chronosequence sites were burned in 1998 (F98), 1989 (F89), 1977 (F77) and 1929 (OJP). All sites were dominated by jack pine prior to the disturbance. During 2004 and 2005, net ecosystem production showed an average carbon gain (g C m(-2) year(-1)) at F89 = 84, HJP75 = 80, HJP94 = 14 and OJP = 20. The other sites lost carbon (g C m(-2) year(-1)) at HJP02 = -139, F98 = -20, and F77 = -58. Gross ecosystem production (GEP), ecosystem respiration (R-e) and evapotranspiration tended to be greater at the burned sites than the harvested sites. The F89 and F77 sites had the strongest response of GEP to photosynthetically active radiation, and the strongest response of R. to soil temperature at the 2-cm depth. HJP02 had the weakest responses, followed by HJP94. This apparent greater ecosystem activity at the burned sites is likely caused by local differences in soil moisture and nutrients, differences in vegetation development, and differences in the decomposition of coarse woody debris. (C) 2008 Elsevier B.V. All rights reserved.
引用
收藏
页码:783 / 794
页数:12
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