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pro vyhledávání: '"TEMPERATE BOG"'
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Autor:
Eeva-Stiina Tuittila, Ivan Mammarella, Timo Vesala, Raija Laiho, Pavel Alekseychik, Aino Korrensalo, Laura Kettunen
Publikováno v:
Journal of Vegetation Science. 29:136-146
Question: Peatlands are globally important for carbon storage due to the imbalance between plant biomass production and decomposition. Distribution of both live standing biomass (BM, dry mass g/m(2)) and biomass production (BMP, dry mass gm(-2) growi
Autor:
P. Alekseychik, I. Mammarella, D. Karpov, S. Dengel, I. Terentieva, A. Sabrekov, M. Glagolev, E. Lapshina
Publikováno v:
Atmospheric Chemistry and Physics, Vol 17, Pp 9333-9345 (2017)
Very few studies of ecosystem–atmosphere exchange involving eddy covariance data have been conducted in Siberia, with none in the western Siberian middle taiga. This work provides the first estimates of carbon dioxide (CO2) and energy budgets in a
Autor:
Slater, Julie M., Slater
Peatlands are a type of wetland in which anoxic conditions cause low rates of decomposition, leading to the accumulation of partially decomposed plant matter – that is, peat. Although peatlands occupy only ~3% of the earth’s terrestrial surface,
Autor:
Qiu, C., Zhu, D., Ciais, P., Guenet, B., Krinner, G., Peng, S., Aurela, M., Bernhofer, C., Bruemmer, C., Bret-Harte, S., Chu, H., Chen, J., Desai, A.R., Dusek, J., Euskirchen, E.S., Fortuniak, K., Flanagan, L.B., Friborg, T., Grygoruk, M., Gogo, S., Gruenwald, T., Hansen, B.U., Holl, D., Humphreys, E., Hurkuck, M., Kiely, G., Klatt, J., Kutzbach, L., Largeron, C., Laggoun-Defarge, F., Lund, M., Lafleur, P.M., Li, X., Mammarella, I., Merbold, L., Nilsson, M.B., Olejnik, J., Ottosson-Lofvenius, M., Oechel, W., Parmentier, F.-J.W., Peichl, M., Pirk, N., Peltola, O., Pawlak, W., Rasse, D., Rinne, J., Shaver, G., Schmid, H.P., Sottocornola, M., Steinbrecher, R., Sachs, T., Urbaniak, M., Zona, D., Ziemblinska, K.
Publikováno v:
Geoscientific Model Development
Geoscientific Model Development, European Geosciences Union, 2018, 11, pp.497-519. ⟨10.5194/gmd-11-497-2018⟩
Qiu, C, Zhu, D, Ciais, P, Guenet, B, Krinner, G, Peng, S, Aurela, M, Bernhofer, C, Brümmer, C, Bret-Harte, S, Chu, H, Chen, J, Desai, A R, Dušek, J, Euskirchen, E S, Fortuniak, K, Flanagan, L B, Friborg, T, Grygoruk, M, Gogo, S, Grünwald, T, Hansen, B U, Holl, D, Humphreys, E, Hurkuck, M, Kiely, G, Klatt, J, Kutzbach, L, Largeron, C, Laggoun-Défarge, F, Lund, M, Lafleur, P M, Li, X, Mammarella, I, Merbold, L, Nilsson, M B, Olejnik, J, Ottosson-Löfvenius, M, Oechel, W, Parmentier, F-J W, Peichl, M, Pirk, N, Peltola, O, Pawlak, W, Rasse, D, Rinne, J, Shaver, G, Schmid, H P, Sottocornola, M, Steinbrecher, R, Sachs, T, Urbaniak, M, Zona, D & Ziemblinska, K 2018, ' ORCHIDEE-PEAT (revision 4596), a model for northern peatland CO2, water, and energy fluxes on daily to annual scales ', Geoscientific Model Development, vol. 11, no. 2, pp. 497-519 . https://doi.org/10.5194/gmd-11-497-2018
Geoscientific Model Development, 2018, 11, pp.497-519. ⟨10.5194/gmd-11-497-2018⟩
Geoscientific Model Development, vol 11, iss 2
Geoscientific model development, 11 (2), 497–519
Qiu, C, Zhu, D, Ciais, P, Guenet, B, Krinner, G, Peng, S, Aurela, M, Bernhofer, C, Bruemmer, C, Bret-Harte, S, Chu, H, Chen, J, Desai, A R, Dušek, J, Euskirchen, E S, Fortuniak, K, Flanagan, L B, Friborg, T, Grygoruk, M, Gogo, S, Grünwald, T, Hansen, B, Holl, D, Humphreys, E, Hurkuck, M, Kiely, G, Klatt, J, Kutzbach, L, Largeron, C, Laggoun-Defarge, F, Lund, M, Lafleur, P M, Li, X, Mammarella, I, Merbold, L, Nilsson, M B, Olejnik, J, Ottosson-Löfvenius, M, Oechel, W, Parmentier, F-J W, Peichl, M, Pirk, N, Peltola, O, Pawlak, W, Rasse, D, Rinne, J, Shaver, G, Schmid, H P, Sottocornola, M, Steinbrecher, R, Sachs, T, Urbaniak, M, Zona, D & Ziemblinska, K 2018, ' ORCHIDEE-PEAT (revision 4596), a model for northern peatland CO 2, water, and energy fluxes on daily to annual scales ', Geoscientific Model Development, vol. 11, no. 2, pp. 497-519 . https://doi.org/10.5194/gmd-11-497-2018
Geoscientific Model Development, European Geosciences Union, 2018, 11, pp.497-519. ⟨10.5194/gmd-11-497-2018⟩
Qiu, C, Zhu, D, Ciais, P, Guenet, B, Krinner, G, Peng, S, Aurela, M, Bernhofer, C, Brümmer, C, Bret-Harte, S, Chu, H, Chen, J, Desai, A R, Dušek, J, Euskirchen, E S, Fortuniak, K, Flanagan, L B, Friborg, T, Grygoruk, M, Gogo, S, Grünwald, T, Hansen, B U, Holl, D, Humphreys, E, Hurkuck, M, Kiely, G, Klatt, J, Kutzbach, L, Largeron, C, Laggoun-Défarge, F, Lund, M, Lafleur, P M, Li, X, Mammarella, I, Merbold, L, Nilsson, M B, Olejnik, J, Ottosson-Löfvenius, M, Oechel, W, Parmentier, F-J W, Peichl, M, Pirk, N, Peltola, O, Pawlak, W, Rasse, D, Rinne, J, Shaver, G, Schmid, H P, Sottocornola, M, Steinbrecher, R, Sachs, T, Urbaniak, M, Zona, D & Ziemblinska, K 2018, ' ORCHIDEE-PEAT (revision 4596), a model for northern peatland CO2, water, and energy fluxes on daily to annual scales ', Geoscientific Model Development, vol. 11, no. 2, pp. 497-519 . https://doi.org/10.5194/gmd-11-497-2018
Geoscientific Model Development, 2018, 11, pp.497-519. ⟨10.5194/gmd-11-497-2018⟩
Geoscientific Model Development, vol 11, iss 2
Geoscientific model development, 11 (2), 497–519
Qiu, C, Zhu, D, Ciais, P, Guenet, B, Krinner, G, Peng, S, Aurela, M, Bernhofer, C, Bruemmer, C, Bret-Harte, S, Chu, H, Chen, J, Desai, A R, Dušek, J, Euskirchen, E S, Fortuniak, K, Flanagan, L B, Friborg, T, Grygoruk, M, Gogo, S, Grünwald, T, Hansen, B, Holl, D, Humphreys, E, Hurkuck, M, Kiely, G, Klatt, J, Kutzbach, L, Largeron, C, Laggoun-Defarge, F, Lund, M, Lafleur, P M, Li, X, Mammarella, I, Merbold, L, Nilsson, M B, Olejnik, J, Ottosson-Löfvenius, M, Oechel, W, Parmentier, F-J W, Peichl, M, Pirk, N, Peltola, O, Pawlak, W, Rasse, D, Rinne, J, Shaver, G, Schmid, H P, Sottocornola, M, Steinbrecher, R, Sachs, T, Urbaniak, M, Zona, D & Ziemblinska, K 2018, ' ORCHIDEE-PEAT (revision 4596), a model for northern peatland CO 2, water, and energy fluxes on daily to annual scales ', Geoscientific Model Development, vol. 11, no. 2, pp. 497-519 . https://doi.org/10.5194/gmd-11-497-2018
Peatlands store substantial amounts of carbon and are vulnerable to climate change. We present a modified version of the Organising Carbon and Hydrology In Dynamic Ecosystems (ORCHIDEE) land surface model for simulating the hydrology, surface energy,
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::0f4c522aae3b2c7e3f8ce1ed48a2920c
http://doi.crossref.org/servlet/query?format=unixref&pid=bib@gfz-potsdam.de&id=10.5194/gmd-11-497-2018
http://doi.crossref.org/servlet/query?format=unixref&pid=bib@gfz-potsdam.de&id=10.5194/gmd-11-497-2018
Akademický článek
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Autor:
Tsujino, Riyou, Fujita, Noboru, Katayama, Masao, Kawase, Daiju, Matsui, Kiyoshi, Seo, Akihiro, Shimamura, Tetsuya, Takemon, Yasuhiro, Tsujimura, Nozomi, Yumoto, Takakazu, Ushimaru, Atushi
Publikováno v:
LIMNOLOGY. 11(3):289-297
Publikováno v:
Limnology. 10:167-176
Abiotic environmental variables and invertebrate assemblages were compared among four habitat types (bare hollow, sphagnum-rich hollow, pool, and mat edge) on a floating mat in Mizorogaike Pond, Kyoto. We found differences in abiotic environments bet
Akademický článek
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