Long-term half-hourly measurement of soil CO2 concentration and soil respiration in a temperate deciduous forest -: art. no. 4631

被引:124
作者
Hirano, T
Kim, H
Tanaka, Y
机构
[1] Hokkaido Univ, Grad Sch Agr, Kita Ku, Sapporo, Hokkaido 0608589, Japan
[2] Hokkaido Univ, Tomakomai Expt Forest, Takaoka, Tomakomai 0530035, Japan
关键词
soil CO2; soil respiration; temperate forest;
D O I
10.1029/2003JD003766
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
[1] We conducted a field experiment in a cool-temperate deciduous forest to investigate the dynamic behavior of soil CO2 and the vertical distribution of soil respiration. Soil CO2 concentration (C) was measured half-hourly at four depths for 6 months in 2000 with infrared gas analyzers installed below ground. Using C profiles, soil surface CO2 efflux (F-0), CO2 production rates of the topsoil (P-A), and CO2 flux from the subsoil to topsoil (F-CA) were evaluated half-hourly by applying Fick's first law. Some remarkable short-term and long-term variations were found in C, F-0, P-A, F-CA, and the contribution of topsoil respiration to total soil respiration (P-A/F-0), which include (1) rapid increase in C and decrease in F-0 and P-A due to rainwater infiltration, (2) diurnal variation in C coupled with that of the atmosphere, (3) diurnal variation in F-0 and P-A similar to that of topsoil temperature, (4) decrease in C, F-0, and P-A following soil drying in August, (5) linearly increasing F-CA between late May and mid-September, and (6) decrease in P-A/F-0 from around 0.9 during summer to 0.3 in November. The variation of P-A was mainly controlled by soil temperature at -0.07 m between 7degrees and 17degreesC, although P-A did not respond well to soil temperature above and below this temperature range. Above 17degreesC, P-A increased linearly with soil moisture, and moisture variation accounted for the P-A decrease in August. Neither temperature nor moisture explained the P-A behavior below 7degreesC. Subsoil respiration (F-CA) showed an exponential relationship with soil temperature at -1 m.
引用
收藏
页数:13
相关论文
共 37 条
[31]   EVALUATION OF AN INSITU METHOD FOR MEASUREMENT OF GAS DIFFUSIVITY IN SURFACE SOILS [J].
ROLSTON, DE ;
GLAUZ, RD ;
GRUNDMANN, GL ;
LOUIE, DT .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1991, 55 (06) :1536-1542
[32]   SEPARATION OF LITHIUM ISOTOPES BY COUNTERCURRENT-FLOW OF THE COEXISTING PHASES OF A LITHIUM-AMMONIA SOLUTION [J].
SCHINDEWOLF, U ;
REHEIS, T .
JOURNAL DE PHYSIQUE IV, 1991, 1 (C5) :77-82
[33]   MODELING OF CARBON-DIOXIDE TRANSPORT AND PRODUCTION IN SOIL .1. MODEL DEVELOPMENT [J].
SIMUNEK, J ;
SUAREZ, DL .
WATER RESOURCES RESEARCH, 1993, 29 (02) :487-497
[34]   THE ANNUAL CARBON-DIOXIDE CYCLE IN A MONTANE SOIL - OBSERVATIONS, MODELING, AND IMPLICATIONS FOR WEATHERING [J].
SOLOMON, DK ;
CERLING, TE .
WATER RESOURCES RESEARCH, 1987, 23 (12) :2257-2265
[35]   Calculation of CO2 flux from forest soil using 222Rn calibrated method [J].
Uchida, M ;
Nojiri, Y ;
Saigusa, N ;
Oikawa, T .
AGRICULTURAL AND FOREST METEOROLOGY, 1997, 87 (04) :301-311
[36]   Respiration as the main determinant of carbon balance in European forests [J].
Valentini, R ;
Matteucci, G ;
Dolman, AJ ;
Schulze, ED ;
Rebmann, C ;
Moors, EJ ;
Granier, A ;
Gross, P ;
Jensen, NO ;
Pilegaard, K ;
Lindroth, A ;
Grelle, A ;
Bernhofer, C ;
Grünwald, T ;
Aubinet, M ;
Ceulemans, R ;
Kowalski, AS ;
Vesala, T ;
Rannik, Ü ;
Berbigier, P ;
Loustau, D ;
Guömundsson, J ;
Thorgeirsson, H ;
Ibrom, A ;
Morgenstern, K ;
Clement, R ;
Moncrieff, J ;
Montagnani, L ;
Minerbi, S ;
Jarvis, PG .
NATURE, 2000, 404 (6780) :861-865
[37]   Soil-surface CO2 efflux and its spatial and temporal variations in a young ponderosa pine plantation in northern California [J].
Xu, M ;
Qi, Y .
GLOBAL CHANGE BIOLOGY, 2001, 7 (06) :667-677