@techreport{HammerichLuthardtZeitz2022, author = {Hammerich, Jenny and Luthardt, Vera and Zeitz, Jutta}, title = {Moorschutz in den W{\"a}ldern Brandenburgs}, editor = {Hochschule f{\"u}r nachhaltige Entwicklung Eberswalde,}, doi = {10.57741/opus4-366}, url = {http://nbn-resolving.de/urn:nbn:de:kobv:eb1-opus-3660}, pages = {44}, year = {2022}, abstract = {Der Landesbetrieb Forst Brandenburg renaturiert seit 2004 im Zuge des Waldmoorschutzprogrammes Brandenburg in Kooperation mit vielf{\"a}ltigen AkteurInnen aus Naturschutz, Wasser- und Bodenverb{\"a}nden, Beh{\"o}rden und Wissenschaft Moore im Wald. Die umgesetzten Maßnahmen sind sehr vielf{\"a}ltig, es werden sowohl wald- und wasserbauliche Maßnahmen im Moor und Mooreinzugsgebiet als auch Pflegemaßnahmen umgesetzt. Die Renaturierungsmaßnahmen f{\"u}hrten zu einem breiten Wirkungsspektrum bez{\"u}glich der Wasserst{\"a}nde im Moor, der moorspezifischen Biodiversit{\"a}t, des erneuten Torfwachstums und der resultierenden Treibhausgasemissionen. Es konnten positive Entwicklungen bei allen Schutzg{\"u}tern festgestellt werden. Am effektivsten erwiesen sich wasserbauliche Maßnahmen. Waldbauliches Management wirkte in dem hier untersuchten Zeitrahmen vor allem zustandserhaltend.}, language = {de} } @article{TannebergerBirrCouwenbergetal.2022, author = {Tanneberger, Franziska and Birr, Friedrich and Couwenberg, John and Kaiser, Moritz and Luthardt, Vera and Nerger, Monique and Pfister, Sonja and Oppermann, Rainer and Zeitz, Jutta and Beyer, Colja and van der Linden, Sebastian and Wichtmann, Wendelin and N{\"a}rmann, Felix}, title = {Saving soil carbon, greenhouse gas emissions, biodiversity and the economy: paludiculture as sustainable land use option in German fen peatlands}, series = {Regional Environmental Change}, volume = {22}, journal = {Regional Environmental Change}, publisher = {Springer Nature}, issn = {1436-3798}, doi = {10.1007/s10113-022-01900-8}, url = {http://nbn-resolving.de/urn:nbn:de:kobv:eb1-opus-5003}, year = {2022}, abstract = {Peatlands in the European Union are largely drained for agriculture and emit 25\% of the total agricultural greenhouse gas emissions. Drainage-based peatland use has also negative impacts on water quality, drinking water provision and biodiversity. Consequently, key EU environmental policy objectives include the rewetting of all drained peatlands as an essential nature-based solution. Rewetting of peatlands can be combined with site-adapted land use, so-called paludiculture. Paludiculture produces biomass from wet and rewetted peatlands under conditions that maintain the peat body, facilitate peat accumulation and can provide many of the ecosystem services associated with natural, undrained peatlands. The biomass can be used for a wide range of traditional and innovative food, feed, fibre and fuel products. Based on examples in Germany, we have analysed emerging paludiculture options for temperate Europe with respect to greenhouse gas fluxes, biodiversity and indicative business economics. Best estimates of site emission factors vary between 0 and 8 t CO2eq ha-1 y-1. Suitability maps for four peatland-rich federal states (76\% of total German peatland area) indicate that most of the drained, agriculturally used peatland area could be used for paludiculture, about one-third of the fen area for any paludiculture type. Fen-specific biodiversity benefits from rewetting and paludiculture, if compared to the drained state. Under favourable conditions, paludiculture can be economically viable, but costs and revenues vary considerably. Key recommendations for large-scale implementation are providing planning security by paludiculture spatial planning, establishing best practice sites and strengthening research into crops, water tables and management options.}, language = {en} } @article{TannebergerBirrCouwenbergetal., author = {Tanneberger, Franziska and Birr, Friedrich and Couwenberg, John and Kaiser, Moritz and Luthardt, Vera and Nerger, Monique and Pfister, Sonja and Oppermann, Rainer and Zeitz, Jutta and Beyer, Colja and van der Linden, Sebastian and Wichtmann, Wendelin and N{\"a}rmann, Felix}, title = {Saving soil carbon, greenhouse gas emissions, biodiversity and the economy: paludiculture as sustainable land use option in German fen peatlands}, series = {Regional Environmental Change}, volume = {22}, journal = {Regional Environmental Change}, number = {2}, publisher = {Springer Berlin Heidelberg}, issn = {1436-3798}, doi = {10.1007/s10113-022-01900-8}, url = {http://nbn-resolving.de/urn:nbn:de:kobv:eb1-opus-9142}, abstract = {AbstractPeatlands in the European Union are largely drained for agriculture and emit 25\% of the total agricultural greenhouse gas emissions. Drainage-based peatland use has also negative impacts on water quality, drinking water provision and biodiversity. Consequently, key EU environmental policy objectives include the rewetting of all drained peatlands as an essential nature-based solution. Rewetting of peatlands can be combined with site-adapted land use, so-called paludiculture. Paludiculture produces biomass from wet and rewetted peatlands under conditions that maintain the peat body, facilitate peat accumulation and can provide many of the ecosystem services associated with natural, undrained peatlands. The biomass can be used for a wide range of traditional and innovative food, feed, fibre and fuel products. Based on examples in Germany, we have analysed emerging paludiculture options for temperate Europe with respect to greenhouse gas fluxes, biodiversity and indicative business economics. Best estimates of site emission factors vary between 0 and 8 t CO2eq ha-1 y-1. Suitability maps for four peatland-rich federal states (76\% of total German peatland area) indicate that most of the drained, agriculturally used peatland area could be used for paludiculture, about one-third of the fen area for any paludiculture type. Fen-specific biodiversity benefits from rewetting and paludiculture, if compared to the drained state. Under favourable conditions, paludiculture can be economically viable, but costs and revenues vary considerably. Key recommendations for large-scale implementation are providing planning security by paludiculture spatial planning, establishing best practice sites and strengthening research into crops, water tables and management options.}, subject = {-}, language = {en} }