dc.contributor.author | Fortuniak, Krzysztof | |
dc.contributor.editor | Fortuniak, Krzysztof | |
dc.date.accessioned | 2017-01-10T06:59:00Z | |
dc.date.available | 2017-01-10T06:59:00Z | |
dc.date.issued | 2016 | |
dc.identifier.isbn | 978-83-944039-0-4 | |
dc.identifier.uri | http://hdl.handle.net/11089/20334 | |
dc.description.abstract | The review shows the importance of measurements of gas exchange between the Earth's surface and
the atmosphere in the light of contemporary climate change. The role of wetlands in the global carbon
cycle is shortly characterized. The methane emission from wetlands is discussed with particular
emphasis on the results of direct measurements of CH4 fluxes with the aid of eddy covariance method.
Next, the exchange of carbon dioxide is characterized. This review focuses on the results of eddy
covariance measurements on sites with all-year round data sets allowing to assess the annual balance
of this gas at wetlands. | pl_PL |
dc.description.abstract | W opracowaniu przedstawiono znaczenie pomiarów wymiany gazowej pomiędzy powierzchnią Ziemi
a atmosferą w świetle współczesnych zmian klimatycznych. Krótko scharakteryzowano rolę obszarów
podmokłych w globalnym obiegu węgla. Omówiono emisję metanu z bagien ze szczególnym
uwzględnieniem wyników pomiarów strumieni tego gazu wykonanych metodą kowariancji wirów.
W dalszej części scharakteryzowano wymianę dwutlenku węgla koncentrując się na wynikach
pomiarów kowariancyjnych pozwalających ocenić roczne saldo tego gazu na terenach bagiennych. | pl_PL |
dc.description.sponsorship | Praca wykonana w ramach projektu “Bilans absorpcji i emisji gazów cieplarnianych (metanu,
dwutlenku węgla i pary wodnej) na obszarach bagiennych (studium Biebrzańskiego Parku
Narodowego)”sfinansowanego ze środków Narodowego Centrum Nauki przyznanych na podstawie
decyzji numer DECR2011/01/B/ST10/07550. | pl_PL |
dc.language.iso | pl | pl_PL |
dc.publisher | Katedra Meteorologii i Klimatologii WNG UŁ | pl_PL |
dc.relation.ispartof | Wybrane problemy pomiarów wymiany gazowej pomiędzy powierzchnią ziemi a atmosferą na terenach bagiennych. Doświadczenia trzyletnich pomiarów w Biebrzańskim Parku Narodowym; | |
dc.rights | Uznanie autorstwa-Użycie niekomercyjne-Bez utworów zależnych 3.0 Polska | * |
dc.rights.uri | http://creativecommons.org/licenses/by-nc-nd/3.0/pl/ | * |
dc.subject | surface-atmosphere gas exchange | pl_PL |
dc.subject | greenhouse gases | pl_PL |
dc.subject | eddy-covariance method | pl_PL |
dc.subject | wymiana gazowa Ziemia-atmosfera | pl_PL |
dc.subject | gazy cieplarniane | pl_PL |
dc.subject | metoda kowariancji wirów | pl_PL |
dc.title | Wymiana metanu i dwutlenku węgla pomiędzy powierzchnią Ziemi a atmosferą na terenach bagiennych – przegląd opublikowanych wyników pomiarów bezpośrednich i oszacowań | pl_PL |
dc.title.alternative | Methane and carbon dioxide exchange between the surface and the atmosphere at wetlands – review of published results of direct measurements and estimations | pl_PL |
dc.type | Book chapter | pl_PL |
dc.rights.holder | Copyright by Katedra Meteorologii i Klimatologii WNG UŁ, Łódź 2016 | pl_PL |
dc.page.number | [5]-18 | pl_PL |
dc.contributor.authorAffiliation | Uniwersytet Łodzki, Wydział Nauk Geograficznych, Katedera Meteorologii i Klimatologii | pl_PL |
dc.references | Aurela, M., Laurila, T., Tuovinen, J.-P., 2004, The timing of snow melt controls the annual CO2 balance in a subarctic fen, Geophysical Research Letters, 31, L16119, doi:10.1029/2004GL020315 | pl_PL |
dc.references | Aurela, M., Lohila, A., Tuovinen, J.-P., Hatakka, J., Riutta, T., Laurila, T., 2009, Carbon dioxide exchange on a northern boreal fen, Boreal Environ. Res., 14 (4), 699–710. | pl_PL |
dc.references | Baldocchi, D., 2014, Measuring fluxes of trace gases and energy between ecosystems and the atmosphere – the state and future of the eddy covariance method, Glob. Change Biol., 20, 3600– 3609. | pl_PL |
dc.references | Baldocchi, D., Falge, E., Gu, L., Olson, R., Hollinger, D., Running, S., Anthoni, P., Bernhofer, C., Davis, K., Evans, R., Fuentes, J., Goldstein, A., Katul, G., Law, B., Lee, X.H., Malhi, Y., Meyers, T., Munger, W., Oechel, W., Paw, K.T., Pilegaard, K., Schmid, H.P., Valentini, R., Verma, S., Vesala, T., Wilson, K., Wofsy, S., 2001, FLUXNET: A new tool to study the temporal and spatial variability of ecosystem-scale carbon dioxide, water vapor, and energy flux densities, Bull. Amer. Meteorol. Soc., 82, 2415–2434. | pl_PL |
dc.references | Baldocchi, D., Detto, M., Sonnentag, O., Verfaillie, J., Teh, Y.A., Silver, W., Kelly, N.M., 2012, The challenges of measuring methane fluxes and concentrations over a peatland pasture, Agr. Forest Meteorol., 153, 177–187. | pl_PL |
dc.references | Bergamaschi, P.C., Frankenberg, C., Meirink, J.F., Krol, M., Dentener, F., Wagner, T., Platt, U., Kaplan, J.O., Körner, S., Heimann, M., Goede, A., 2007, Satellite chartography of atmospheric methane from SCIAMACHY on board ENVISAT: 2. Evaluation based on inverse model simulations, J. Geophys. Res., 112, D02304. | pl_PL |
dc.references | Bloom, A.A., Palmer, P.I., Fraser, A., Reay, D.S., Frankenberg, C., 2010, Large-scale controls of methanogenesis inferred from methane and gravity spaceborne data, Science, 327, 322–325. | pl_PL |
dc.references | Bridgham, S.D., Cadillo-Quiroz, H., Keller, J.K., Zhuang, Q., 2013, Methane emissions from wetlands: biogeochemical, microbial, and modeling perspectives from local to global scales, Glob. Chang. Biol., 19(5), 1325–1346. | pl_PL |
dc.references | Bridgham, S.D., Megonigal, J.P., Keller. J.K., Bliss, N.B., Trettin, C., 2006, The carbon balance of North American wetlands, Wetlands, 26, 889–916. | pl_PL |
dc.references | Bridgham, S.D., Moore, T.R., Richardson, C.J., Roulet. N.T., 2014, Errors in greenhouse forcing and soil carbon sequestration estimates in freshwater wetlands: a comment on Mitsch et al. (2013), Landscape Ecology, DOI: 10.1007/s10980-014-0067-2 . | pl_PL |
dc.references | Ciais, P., Sabine, C., Bala, G., Bopp, L., Brovkin, V., Canadell, J., Chhabra, A., DeFries, R., Galloway, J., Heimann, M., Jones, C., Le Quéré, C., Myneni, R.B., Piao, S., Thornton, P., 2013, Carbon and Other Biogeochemical Cycles, w: T.F. Stocke., D. Qin, G.-K. Plattner, M. Tignor, S.K. Allen, J. Boschung, A. Nauels, Y. Xia, V. Bex, P.M. Midgley (red.), Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA. | pl_PL |
dc.references | Cogley, J., 1994, GGHYDRO: global hydrographic data, Peterborough, Ontario, Canada. | pl_PL |
dc.references | Denman, K.L. i in., 2007, Couplings between changes in the climate system and biogeochemistry. w: S. Solomon i in. (red.), Climate change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press, Cambridge, 539–544. | pl_PL |
dc.references | Dinsmore, K.J., Billett, F.M., Skiba, U.M., Rees, R.M., Drewer, J., Helfter, C., 2010, Role of the aquatic pathway in the carbon and greenhouse gas budgets of a peatland catchment, Glob. Change Biol., 16, 2750–2762. | pl_PL |
dc.references | Dunfield, P., Knowles, R., Dumont, R., Moore, T.R., 1993, Methane production and consumption in temperate and subarctic peat soils: Response to temperature and pH, Soil Biol. Biochem., 25(3), 321–326. | pl_PL |
dc.references | Dušek, J., Čížková , H., Czerný, R., Taufarová, K., Šmídová, M., Janouš, D., 2009, Influence of summer flood on the net ecosystem exchange of CO2 in a temperate sedge-grass marsh, Agr. Forest Meteorol., 149, 1524–1530. | pl_PL |
dc.references | Edwards, G.C., Neumann, H.H., den Hartog, G., Thurtell, G.W., Kidd, G., 1994, Eddy correlation measurements of methane fluxes using a tunable diode laser at the Kinosheo Lake tower site during the Northern Wetlands Study (NOWES), J. Geophys. Res., 99, 1511–1517. | pl_PL |
dc.references | Fan, S.M., Wofsy, S.C., Bakwin, P.S., Jacob, D.J., Anderson, S.M., Kebabian, P.L., McManus, J.B., Kolb, C.E., Fitzjarrald, D.R., 1992, Micrometeorological measurements of CH4 and CO2 exchange between the atmosphere and subarctic tundra, J. Geophys. Res., 97, 16627–16643. | pl_PL |
dc.references | Falge, E., Baldocchi, D., Olson, R.J., Anthoni, P., Aubinet, M., Bernhofer, C., Burba, G., Ceulemans, R., Clement, R., Dolman, H., Granier, A., Gross, P., Grunwald, T., Hollinger, D., Jensen, N.-O., Katul, G., Keronen, P., Kowalski, A., Ta Lai, C., Law, B.E., Meyers, T., Moncrieff, J., Moors, E., Munger, J.W., Pilegaard, K., Rannik, U., Rebmann, C., Suyker, A., Tenhunen, J., Tu, K., Verma, S., Vesala, T., Wilson, K., Wofsy, S., 2001, Gap filling strategies for defensible annual sums of net ecosystem exchange, Agr. Forest Meteorol., 107, 43–69. | pl_PL |
dc.references | Fortuniak, K., 2010, Radiacyjne i turbulencyjne składniki bilansu cieplnego terenów zurbanizowanych na przykładzie Łodzi, Wyd. UŁ, Łódź, 232 s. | pl_PL |
dc.references | Fortuniak, K., Pawlak, W., 2014, Preliminary results of net ecosystem exchange of greenhouse gases (CO2, CH4, H2O) at wetland of Biebrza National Park, Poland, Proc. 4th International Field Symposium „West Siberian Peatlands and Carbon Cycle: Past And Present”, 04-17.08.2014, Novosibirsk, Russia, 141–143. | pl_PL |
dc.references | Frolking, S., Roulet, N.T., 2007, Holocene radiative forcing impact of northern peatland carbon accumulation and methane emissions, Global Change Biology, 13, 1079–1088. | pl_PL |
dc.references | Gaunt, J.L., Neue, H.U., Bragais, J., Grant, I.F., Giller, K.E., 1997, Soil characteristics that regulate soil reduction and methane production in wetland rice soils, Soil Sci. Soc. Am. J., 61, 1526– 1531. | pl_PL |
dc.references | Garcia, J.L., Patel, B.K.C., Ollivier, B., 2000, Taxonomic, phylogenetic, and ecological diversity of methanogenic Archaea, Anaerobe, 6(4), 205–226. | pl_PL |
dc.references | Gorham, E., 1991, Northern peatlands: Role in the carbon cycle and probable responses to climatic warming, Ecol. Appl., 1, 182–195. | pl_PL |
dc.references | Gronlund, A., Rasse, D.P., Rozbicki, T., Chormanski, J., 2011, Meteorology and greenhouse gas emission w: Final Report of the PL0082 Project: Project Biodiversity protection of Red Bog (Czerwone Bagno) – relic of raised bogs in Central Europe, supported by grant from Iceland, Liechtenstein and Norway through the EEA Financial Mechanism and the Norwegian Financial Mechanism. | pl_PL |
dc.references | Hendriks, D.M.D., Van Huissteden, J., Dolman, A.J., Van der Molen, M.K., 2007, The full green house gas balance of an abandoned peat meadow, Biogeosciences, 4, 411–424. | pl_PL |
dc.references | Hendriks, D.M., Dolman, A.J., van der Molen, M., van Huissteden, J., 2008, A compact and stable eddy covariance set-up for methane measurements using off-axis integrated cavity output spectroscopy, Atmos. Chem. Phys., 8, 431–443. | pl_PL |
dc.references | Kayranli, B., Scholz, M., Mustafa, A., Hedmark, Å., 2010, Carbon Storage and Fluxes within Freshwater Wetlands: a Critical Review, Wetlands, 30, 111–124. | pl_PL |
dc.references | Lafleur, P.M., Roulet, N.T., Bubier, J.L., Frolking, S., Moore, T.R., 2003, Interannual vari- ability in the peatland-atmosphere carbon dioxide exchange at an ombrotrophic bog, Global Biogeochem. Cycles, 17 (2), 14. | pl_PL |
dc.references | Lafleur, P.M., 2009, Connecting Atmosphere and Wetland: Trace Gas Exchange, Geography Compass, 3, 560–585. | pl_PL |
dc.references | Lai, D.Y.F., 2009, Methane dynamics in northern peatlands: a review, Pedosphere, 19, 409–421. | pl_PL |
dc.references | Laurila, T., Aurela, M., Tuovinen, J.P., 2012, Eddy covariance measurements over wetlands. w: M. Aubinet, T. Vesala, D. Papale (red.), Eddy Covariance: A Practical Guide to Measurement and Data Analysis, Springer, Dordrecht, Heidelberg, London, New York, 345–364. | pl_PL |
dc.references | Lehner, B., Döll, P., 2004, Development and validation of a global database of lakes, reservoirs and wetlands, J. Hydrol., 296, 1–22. | pl_PL |
dc.references | Lloyd, J., Taylor, J.A., 1994, On the temperature dependence of soil respiration, Functional Ecology, 8, 315–323. | pl_PL |
dc.references | Lund, M., Lafleur, P.M., Roulet, N.T., Lindroth, A., Christensen, T.R., Aurela, M., Chojnicki, B.H., Flanagan, L.B., Humphreys, E.R., Laurila, T., Oechel, W.C., Olejnik, J., Rinne, J., Schubert, P., Nilsson, M.B., 2010, Variability in exchange of CO2 across 12 northern peatland and tundra sites, Global Change Biology, 16, 2436–2448 | pl_PL |
dc.references | Matthews, E., 2000, Wetlands, w: M.A.K. Khalil (red.), Atmospheric Methane. Its Role in Global Environment, Springer-Verlag Berlin Heidelberg, 202–233. | pl_PL |
dc.references | McVeigh, P., Sottocornola, M., Foley, N., Leahya, P., Kiely, G., 2014, Meteorological and functional response partitioning to explain interannual variability of CO2 exchange at an Irish Atlantic blanket bog, Agr. Forest Meteorol., 194, 8–19. | pl_PL |
dc.references | Melton, J.R., Wania, R., Hodson, E.L., Poulter B., Ringeval, B., Spahni, R., Bohn, T., Avis, C.A., Beerling, D.J., Chen, G., Eliseev, A.V., Denisov, S.N., Hopcroft, P.O., Lettenmaier, D.P., Riley, W.J., Singarayer, J.S., Subin, Z.M., Tian, H., Zürcher, S., Brovkin, V., van Bodegom, P.M., Kleinen, T., Yu, Z.C., Kaplan, J.O., 2012, Present state of global wetland extent and wetland methane modelling: conclusions from a model intercomparison project (WETCHIMP), Biogeosciences Discussions, 9, 11577–11654. | pl_PL |
dc.references | Mitsch, W.J., Bernal, B., Nahlik, A.M., Mander, Ü., Zhang, L., Anderson, C.J., Jørgensen, S.E., Brix, H., 2013, Wetlands, carbon, and climate change, Landscape Ecol., 28, 583–597. | pl_PL |
dc.references | Moffat, A.M., Papale, D., Reichstein, M., Hollinger, D.Y, Richardson, A.D., Barre, A.G., Beckstein, C., Braswell, B.H., Churkina, G., Desai, A.R., Falge, E., Gove, J.H., Heimann, M., Hui, D., Jarvis, A.J., Kattge, J., Noormets, A., Stauch, V.J., 2007, Comprehensive comparison of gapfilling techniques for eddy covariance net carbon fluxes, Agr. Forest Meteorol., 147, 209–232. | pl_PL |
dc.references | Myhre, G., Shindell, D., Bréon, F.-M., Collins, W., Fuglestvedt, J., Huang, J., Koch, D., Lamarque, J.- F., Lee, D., Mendoza, B., Nakajima, T., Robock, A., Stephens, G., Takemura, T., Zhang, H., 2013, Anthropogenic and Natural Radiative Forcing, w: T.F. Stocker, D. Qin, G.-K. Plattner, M. Tignor, S.K. Allen, J. Boschung, A. Nauels, Y. Xia, V. Bex, P.M. Midgley (red.), Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA. | pl_PL |
dc.references | Nicolini, G., Castaldi, S., Fratini, G., Valentini, R., 2013, A literature overview of micrometeorological CH4 and N2O flux measurements in terrestrial ecosystems, Atmos. Environ., 81, 311–319 | pl_PL |
dc.references | Nilsson, M., Sagerfors, J., Buffam, I., Laudon, H., Eriksson, T., Grelle, A., Klemedtsson, L., Weslien, P., Lindroth, A., 2008, Contemporary carbon accumulation in a boreal oligotrophic minerogenic mire – A significant sink after accounting for all Cfluxes, Glob. Change Biol., 14, 2317–2332. | pl_PL |
dc.references | Neue, H.-U., Roger, P.A.,1993, Rice agriculture: Factors controlling emissions, w: M. Khalil (red.) Atmospheric Methane. Source, Sinks, and Role in Global Change, Springer-Verlag, New York, 254–298. | pl_PL |
dc.references | Neue, H.-U., P. Becker-Heidmann, H . W. Scharpenseel, 1990, Organicm matter dynamics, soil properties and cultural practices in rice lands and their relationship to methane, w: A.F. Bouwman (red.) Soils and the Greenhous Effect, John Wiley, New York, 457–466. | pl_PL |
dc.references | Olefeldt, D., Roulet, N.T., Bergeron, O., Crill, P., Bäckstrand, K., Christensen, T.R., 2012, Net carbon accumulation of a high-latitude permafrost palsa mire similar to permafrost-free peatlands, Geophys. Res. Lett., 39, L03501. | pl_PL |
dc.references | Pfeiffer, E.-M., 1994, Methane fluxes in natural wetlands (marsh and moor) in Northern Germany, Curr. Top Wetland Biogeochem., 1, 36-47. | pl_PL |
dc.references | Peichl, M., Öquist, M., Ottosson Löfvenius M., Ilstedt, U., Sagerfors, J., Grelle, A., Lindroth, A., Nilsson, M.B., 2014, A 12-year record reveals pre-growing season temperature and water table level threshold effects on the net carbon dioxide exchange in a boreal fen, Environ. Res. Lett., 9, 055006. | pl_PL |
dc.references | Peters, V., Conrad, R., 1996, Sequential reduction processes and initiation of CH4 production upon flooding of oxic uplands soils, Soil Biol. Biochem., 28, 371–382. | pl_PL |
dc.references | Reichstein, M., Falge, E., Baldocchi, D., Papale, D., Aubinet, M., Berbigier, P., Bernhofer, C., Buchmann, N., Gilmanov, T., Granier, A., Grunwald, T., Havrankova, K., Ilvesniemi, H., Janous, D., Knohl, A., Laurila, T., Lohila, A., Loustau, D., Matteucci, G., Meyers, T., Miglietta, F., Ourcival, J.M., Pumpanen, J., Rambal, S., Rotenberg, E., Sanz, M., Tenhunen, J., Seufert, G., Vaccari, F., Vesala, T., Yakir, D., Valentini, R., 2005, On the separation of net ecosystem exchange into assimilation and ecosystem respiration: review and improved algorithm, Glob. Change Biol., 11, 1439 | pl_PL |
dc.references | Reichstein, M., Stoy, P.C., Desai, A.R., Lasslop, G., Richardson, A.D., 2012; Partitioning of net fluxes, w: M. Aubinet, T. Vesala, D. Papale (red.), Eddy Covariance: A Practical Guide to Measurement and Data Analysis, Springer, Dordrecht, Heidelberg, London, New York, 263– 289. | pl_PL |
dc.references | Roulet, N.T., Lafleur, P.M., Richard, P.J.H., Moore, T.R., Humphreys, E.R., Bubier, J., 2007, Contemporary carbon balance and late Holocene carbon accumulation in a northern peatland, Glob. Change Biol., 13, 397–411. | pl_PL |
dc.references | Sagerfors, J., Lindroth, A., Grelle, A., Klemedtsson, L., Weslien, P., Nilsson, M., 2008, Annual CO2 exchange between a nutrient-poor, minerotrophic, boreal mire and the atmosphere, Journal of Geophysical Research – Biogeosciences, 113, G01001, doi: 10.1029/2006JG000306. | pl_PL |
dc.references | Shurpali, N.J., Verma, S.B., 1998, Micrometeorological measurements of methane flux in a Minnesota peatland during two growing seasons, Biogeochemistry, 40, 1–15. | pl_PL |
dc.references | Sottocornola, M., Kiely, G., 2010, Hydro-meteorological controls on CO2 flux variation in Irish blanket bog, Agr. Forest Meteorol., 150, 287–297. | pl_PL |
dc.references | Turbiak, J., 2012, Methane emission from peat-muck soil in the Biebrza River valley in relation to ground water level and fertilization, J. Water Land Dev., 17, 77–82. | pl_PL |
dc.references | Turetsky, M.R., Kotowska, A., Bubier, J., Dise, N.B., Crill, P., Hornibrook, E.R.C., Minkkinen, K., Moore, T.R., Myers-Smith, I.H., Nykänen, H., Olefeldt, D., Rinne, J., Saarnio, S., Shurpali, N., Tuittila, E.-S., Waddington, J.M., White, J.R., Wickland, K.P., Wilmking, M., 2014, A synthesis of methane emissions from 71 northern, temperate, and subtropical wetlands, Global Change Biology, 20, 2183–2197. | pl_PL |
dc.references | Turunen, J., Tomppo, E., Tolonen, K., Reinkainen, E., 2002, Estimating carbon accumulation rates of undrained mires in Finland: application to boreal and subarctic regions, The Holocene, 12, 79– 90. | pl_PL |
dc.references | Wang, Z.P., Delaune, R.D., Masscheleyn, P.H., Patrick, W.H., 1993, Soil redox and pH effects on methane production in a flooded rice soil, Soil Sci. Soc. Am. J., 57, 382–385. | pl_PL |
dc.references | Whalen, S.C., 2005, Biogeochemistry of methane exchange between natural wetlands and the atmosphere, Environ. Eng. Sci., 22, 73–94 | pl_PL |
dc.references | Worrall, F., Burt, T.P., Rowson, J.G., Warburton, J., Adamson, J.K., 2009, The multi-annual carbon budget of a peat-covered catchment, Sci. Total Environ., 407 (13), 4084–4094. | pl_PL |
dc.references | Yu, Z.C., 2012, Northern peatland carbon stocks and dynamics: a review. Biogeosciences 9, 4071– 4085. | pl_PL |
dc.contributor.authorEmail | kfortun@uni.lodz.pl | pl_PL |