Measurement of carbon dioxide evolution from a Japanese cedar (Cryptomeria japonica D. Don) forest floor using an open-flow chamber method

Forest Ecology and Management - Tập 123 Số 2-3 - Trang 105-114 - 1999
Mizue Ohashi1, Koichiro Gyokusen1, Akira Saito1
1Laboratory of Silviculture, Faculty of Agriculture, Kyushu University, 6-10-1 Hakozaki, Higashiku, Fukuokashi, Fukuokaken 812-8581, Japan

Tóm tắt

Từ khóa


Tài liệu tham khảo

Anderson, 1973, Carbon dioxide evolution from two temperate deciduous woodland soils, J. Appl. Ecol., 10, 361, 10.2307/2402287

Bazzaz, 1991, Atmospheric CO2 concentrations within a mixed forest: implication for seedling growth, Ecology, 72, 12, 10.2307/1938896

Behara, 1990, Root contribution to total soil metabolism in a tropical forest soil from Orissa, India, For. Ecol. Manage., 36, 125, 10.1016/0378-1127(90)90020-C

Bekku, 1995, Measurement of soil respiration using closed chamber method: an IRGA technique, Ecol. Res., 10, 369, 10.1007/BF02347863

Bowden, 1993, Contributions of aboveground litter, belowground litter, and root respiration to total soil respiration in a temperate mixed hardwood forest, Can. J. For. Res., 23, 1402, 10.1139/x93-177

Brumme, R., 1995. Mechanisms of carbon and nutrient release and retention in beech forest gaps. Plant Soil 168–169, 593–600

Carlyle, 1988, Abiotic controls of soil respiration beneath an eighteen-year – old Pinus radiata stand in south-eastern Australia, J. Ecol., 76, 654, 10.2307/2260565

Chiba, K., 1975. Studies on the mineralization rate of organic matter in forest soils and the rate of the soil respiration of forests. Mem. Fac. Agric. Kochi Univ. 27, 1–108 (in Japanese, with English abstract)

Edwards, 1973, Continuous measurement of carbon dioxide evolution from partitioned forest floor components, Ecology, 54, 406, 10.2307/1934349

Eguchi, S., Sakata, T., Hatano, R., Sakuma, T., 1997. Daily changes of CO2 efflux from the soil of a deciduous broad-leaved forest and its significance as a CO2 source for vegetation. Jpn. J. Soil. Sci. Plant Nutr. 68, 138–147 (in Japanese, with English abstract)

Ewel, 1987, Soil CO2 evolution in Florida slash pine plantations. I. Changes through time, Can. J. For. Res., 17, 325, 10.1139/x87-054

Freijer, 1991, A comparison of field methods for measuring soil carbon dioxide evolution: experiments and simulation, Plant Soil, 135, 133, 10.1007/BF00014786

Fung, 1987, Application of advanced very high resolution radiometer vegetation index to study atmosphere–biosphere exchange of CO2, J. Geophys. Res., 92, 2999, 10.1029/JD092iD03p02999

Garcia, R.L., Demetriades-Shah, T.H., Welles, D.K., Mcdermitt, D.K., Norman, J.M., 1997. Measurement of soil CO2 flux. Poster presented at Agronomy Society of America meeting, California

Gyokusen, K., Saito, A., 1995. Improvement of a portable soil respiration measuring system. Bull. Kyushu Univ. For. 72, 53–62 (in Japanese, with English abstract)

Hagihara, A., Katsuno, M., Hozumi, K., 1984. Studies on soil respiration in a Cryptomeria japonica plantation. Trans. 95th Meet. Jpn. For. Soc. pp. 361–362 (in Japanese)

Hanson, 1993, Seasonal and topographic patterns of forest floor CO2 efflux from an upland oak forest, Tree Physio., 13, 1, 10.1093/treephys/13.1.1

Hendrickson, 1989, Nutrient cycling following whole-tree and conventional harvest in northern mixed forest, Can. J. For. Res., 19, 725, 10.1139/x89-112

Holland, 1997, Variations in the predicted spatial distribution of atmospheric nitrogen deposition and their impact on carbon uptake by terrestrial ecosystems, J. Geophys. Res., 102, 15849, 10.1029/96JD03164

Holt, 1990, Soil respiration in the seasonally dry tropics near Townsville, north Queensland, Aus. J. Soil. Res., 28, 737, 10.1071/SR9900737

Houghton, 1989, Global climatic change, Sci. Am., 260, 18, 10.1038/scientificamerican0489-36

Inoue, K., 1986. Chamber method for measuring CO2 flux from soil surface. J. Agr. Met. 42, 225–230 (in Japanese, with English abstract)

Inoue, T., 1979. Soil physical condition in cultivated lands. In: Terasawa, S. (Ed.), Soil Physical Condition and Plant Growth. Yokendo, Tokyo. pp. 55–60 (in Japanese. The title is a tentative translation from the Japanese title by the authors of this paper)

Kawana, A., Kataoka, H., 1992. Introduction. In: Kawana, A., Kataoka, H. (Eds.), Silviculture. Asakura Shoten, Tokyo. pp. 1–14 (in Japanese. The title is a tentative translation from the Japanese title by the authors of this paper)

Kawanabe, S., Saito, H., Shidei, T., 1975. Studies on the effects of thinning small diametered trees. V. Changes in stand conditions and biomass of Cryptomeria japonica D. Don stand during six years after thinning. J. Jap. For. Soc. 57, 215–223 (in Japanese, with English abstract)

Kimball, 1971, Air turbulence effects upon soil gas exchange, Soil Sci. Soc. Am. Proc., 35, 16, 10.2136/sssaj1971.03615995003500010013x

Kirita, H., 1971. Studies of soil respiration in warm–temperate evergreen broadleaf forests of southwestern Japan. Jap. J. Ecol. 21, 230–244 (in Japanese, with English abstract)

Kirschbaum, 1995, The temperature dependence of soil organic matter decomposition, and the effect of global warming on soil organic C storage, Soil Biol. Biochem., 27, 753, 10.1016/0038-0717(94)00242-S

Koizumi, 1991, Effect of carbon dioxide concentration on microbial respiration in soil, Ecol. Res., 6, 227, 10.1007/BF02347124

Kumamoto Local Meteorological Observatory, 1994–1996. Monthly report of Kumamoto prefecture, Kumamoto, Nos. 1–12 (in Japanese)

Kursar, 1989, Evaluation of soil respiration and soil CO2 concentration in a lowland moist forest in Panama, Plant Soil, 113, 21, 10.1007/BF02181917

Kucera, 1971, Soil respiration studies in tallgrass prairie in Missouri, Ecology, 52, 912, 10.2307/1936043

Lamade, 1996, Estimation of carbon allocation to the roots from soil respiration measurements of oil palm, Plant Soil, 181, 329, 10.1007/BF00012067

Lassard, 1994, Methane and carbon dioxide fluxes from poorly drained adjacent cultivated and forest sites, Can. J. Soil Sci., 74, 139, 10.4141/cjss94-021

Maggs, 1990, Soil and litter respiration in rainforests of contrasting nutrient status and physiognomic structure near Lake Eacham, north-east Queensland, Aus. J. Ecol., 15, 329, 10.1111/j.1442-9993.1990.tb01037.x

Miyajima, H., 1989. Cryptomeria japonica and Camaecyparis obtusa in the Kyushu Region. Kyushu Univ. Press, Fukuoka. 275 pp. (in Japanese. The title is a tentative translation from the Japanese title by the authors of this paper.)

Mizunaga, 1994, Prediction of thinning effect by canopy model. II. Prediction of foliage distribution and stem volume increments and their verifications, J. Jpn. For. Soc., 76, 329

Nakadai, 1993, Examination of the method for measuring soil respiration in cultivated land: effect of carbon dioxide concentration on soil respiration, Ecol. Res., 8, 65, 10.1007/BF02348608

Nakane, 1983, Estimation of root respiration rate in a mature forest ecosystem, Jpn. J. Ecol., 33, 397

Nakane, 1996, Root respiration rate before and just after clear-felling in a mature, deciduous, broad-leaved forest, Ecol. Res., 11, 111, 10.1007/BF02347678

Norman, 1992, Soil surface CO2 fluxes and the carbon budget of a grassland, J. Geophys. Res., 97, 18845, 10.1029/92JD01348

Oikawa, T., 1991. Increase of atmospheric CO2 concentration and biosphere. J. Agr. Met. 47, 191–194 (in Japanese)

Ohashi, 1995, Effects of carbon dioxide concentration and wind speed using the chamber method on soil respiration, J. Jpn. For. Soc., 77, 599

Ohashi, M., Gyokusen, K., Saito, A., 1999. Changes in environmental factors controlling soil respiration in a forest floor. Trans. Mtg. Kyushu Br. Jpn. For. Soc. 52 (in press, in Japanese)

Pajari, B., 1995. Soil respiration in a poor upland site of Scots pine stand subjected to elevated temperatures and atmospheric carbon concentration. Plant Soil 168–169, 563–570

Raich, 1992, The global carbon dioxide flux in soil respiration and its relationship to vegetation and climate, Tellus, 44B, 81, 10.1034/j.1600-0889.1992.t01-1-00001.x

Sakai, M., Tsutsumi, T., 1987. Carbon cycles of two different soils in a cool-temperate forest in Japan. II. Seasonal variations of soil respiration rates under the effects of soil environmental factors. J. Jpn. For. Soc. 69, 41–48 (in Japanese, with English abstract)

Sato, D., 1983. Silviculture. Buneido, Tokyo, pp. 288 (in Japanese, the title is a tentative translation from the Japanese title by the authors of this paper)

Schlentner, 1985, Relationships between CO2 evolution from soil, substrate temperature, and substrate moisture in four mature forest types in interior Alaska, Can. J. For. Res., 15, 97, 10.1139/x85-018

Simono, T., Takeda, H., Iwatsubo, G., Tsutsumi, T., 1989. Seasonal changes in soil respiration rates from the floor of Chamaecyparis obtsusa and Cryptomeria japonica plantations. Bull. Kyoto Univ. For. 61, 46–59 (in Japanese, with English abstract)

Singh, 1977, Plant decomposition and soil respiration in terrestrial ecosystems, Bot. Rev., 43, 449, 10.1007/BF02860844

Striegl, 1998, Effects of a clear-cut harvest on soil respiration in a jack pine-lichen woodland, Can. J. For. Res., 28, 534, 10.1139/x98-023

Tatsuhara, S., Suzuki, M., 1995. Modeling volume growth for two-storied sugi (Cryptomeria japonica) stands. J. Jpn. For. Soc. 77, 9–19 (in Japanese, with English abstract)

Thierron, 1996, Contribution of root respiration to total CO2 efflux from the soil of a deciduous forest, Can. J. For. Res., 26, 1142, 10.1139/x26-127

Toland, 1994, Seasonal patterns of soil respiration in intact and clear-cut northern hardwood forests, Can. J. For. Res., 24, 1711, 10.1139/x94-221

Townsend, 1992, Tropical soils could dominate the short-term carbon cycle feedbacks to increased global temperatures, Clim. Change, 22, 293, 10.1007/BF00142430

Vose, 1997, Soil respiration response to three years of elevated CO2 and N fertilization in ponderosa pine (Pinus ponderosa Doug. ex Laws.), Plant Soil, 190, 19, 10.1023/A:1004204129128

Yabuki, K., 1985. Fluent environments of plants. Asakura Shoten, Tokyo. 200 pp. (in Japanese, the title is a tentative translation from the Japanese title by the authors of this paper)

Yoda, K., 1971. Forest Ecology. Tsukiji Shokan, Tokyo. 331 pp. (in Japanese, the title is a tentative translation from the Japanese title by the authors of this paper)