Using measurements of soil CO2 efflux and concentrations to infer the depth distribution of CO2 production in a forest soil

被引:29
作者
Drewitt, GB [1 ]
Black, TA [1 ]
Jassal, RS [1 ]
机构
[1] Univ British Columbia, Fac Agr Sci, Vancouver, BC V6T 1Z4, Canada
关键词
soil carbon dioxide; CO2; soil respiration; steady-state model;
D O I
10.4141/S04-041
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Carbon dioxide (CO2) from soil respiration is the focus of many ecosystem-atmosphere studies. However, due to the difficulty in obtaining measurements, there is a relative lack of information on the behavior of CO2 in the soil. This paper describes an accurate method that can be used in the field to measure CO2 concentration in small (10-cm) samples of soil air using an infrared gas analyzer. Measurements on samples drawn by syringe from different depths are compared to those calculated using a simple steady-state model derived from the conservation equation for soil CO2 and Fick's law of diffusion. The study site is a second growth coastal temperate Douglas-fir forest plantation (53 yr old) located on the eastern slope of Vancouver Island, Canada. Measurements of CO2 concentrations were obtained from two locations at six soil depths between 0.02 and I m at various times of the year in 2000 and 2001. The vertical profiles of CO2 concentrations generally had similar shapes throughout the year although there was considerably more short-term variability in the shallow layers. Below-ground CO2 concentrations were higher during summer and decreased during the winter. Non-zero CO2 concentration gradients between the 0.5- and I-m depths suggested Some CO2 production below the I-m depth. By matching modelled CO2 concentrations with measured values and using measured CO2 efflux, we used the model to determine the CO2 production profile. Calculations of CO2 production profiles indicated that more than 85% of the CO2 efflux from this forest soil originates at depths shallower than 30 cm.
引用
收藏
页码:213 / 221
页数:9
相关论文
共 24 条
[1]   Assessing the eddy covariance technique for evaluating carbon dioxide exchange rates of ecosystems: past, present and future [J].
Baldocchi, DD .
GLOBAL CHANGE BIOLOGY, 2003, 9 (04) :479-492
[2]   A model of one-dimensional steady-state carbon dioxide diffusion from soil [J].
Cook, FJ ;
Thomas, SM ;
Kelliher, FM ;
Whitehead, D .
ECOLOGICAL MODELLING, 1998, 109 (02) :155-164
[3]   GAS DIFFUSIVITY AND PRODUCTION OF CO2 IN DEEP SOILS OF THE EASTERN AMAZON [J].
DAVIDSON, EA ;
TRUMBORE, SE .
TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY, 1995, 47 (05) :550-565
[4]  
DAY JH, 1959, 6 BRIT COL SOIL SURV
[5]   Measuring forest floor CO2 fluxes in a Douglas-fir forest [J].
Drewitt, GB ;
Black, TA ;
Nesic, Z ;
Humphreys, ER ;
Jork, EM ;
Swanson, R ;
Ethier, GJ ;
Griffis, T ;
Morgenstern, K .
AGRICULTURAL AND FOREST METEOROLOGY, 2002, 110 (04) :299-317
[6]   A model for soil CO2 production and transport 1:: Model development [J].
Fang, C ;
Moncrieff, JB .
AGRICULTURAL AND FOREST METEOROLOGY, 1999, 95 (04) :225-236
[7]   Adapted Fick's law applied to soil respiration [J].
Freijer, JI ;
Leffelaar, PA .
WATER RESOURCES RESEARCH, 1996, 32 (04) :791-800
[8]   Respiration in the balance [J].
Grace, J ;
Rayment, M .
NATURE, 2000, 404 (6780) :819-820
[9]   Annual and seasonal variability of sensible and latent heat fluxes above a coastal Douglas-fir forest, British Columbia, Canada [J].
Humphreys, ER ;
Black, TA ;
Ethier, GJ ;
Drewitt, GB ;
Spittlehouse, DL ;
Jork, EM ;
Nesic, Z ;
Livingston, NJ .
AGRICULTURAL AND FOREST METEOROLOGY, 2003, 115 (1-2) :109-125
[10]   A model of the production and transport of CO2 in soil:: predicting soil CO2 concentrations and CO2 efflux from a forest floor [J].
Jassal, RS ;
Black, TA ;
Drewitt, GB ;
Novak, MD ;
Gaumont-Guay, D ;
Nesic, Z .
AGRICULTURAL AND FOREST METEOROLOGY, 2004, 124 (3-4) :219-236