Die Publikation enthält die Ergebnisse einer EU-weiten Recherche zu den statistischen Methoden, die zur Erfüllung der Berichtspflichten gegenüber der EU genutzt werden. Recherchiert wurden die Methoden, die für die Erhebung der erneuerbaren Strom- und Wärmemengen, die nicht in zentrale Netze eingespeist werden, genutzt werden. In 27 EU-Mitgliedstaaten sowie der Schweiz und Großbritannien wurden durch muttersprachliche Rechercheure*Rechercheurinnen in Interviews mit Experten*Expertinnen des jeweiligen Landes Informationen zu den eingesetzten Methoden erhoben. Den Interviews wurden Literatur- und Internetrecherchen vorangestellt. Die statistischen Methoden sind in der Publikation transparent beschrieben und vergleichend dargestellt. Es sind Informationen zu den folgenden Energieträgern enthalten: zur Stromerzeugung aus Windkraft, Photovoltaik, Wasserkraft, Geothermie, fester und flüssiger Biomasse und Biogasen sowie zur Wärme- und Kälteerzeugung aus fester und flüssiger Biomasse, aus Biogasen, Biokraftstoffen jenseits des Verkehrssektors, Solarthermie, Umweltwärme und Geothermie. Für die Wärmenutzung wurde außerdem nach den Sektoren Private Haushalte, Industrie, Dienstleistungen und Landwirtschaft unterschieden. Vier der recherchierten Methoden wurden nach festgelegten Kriterien ausgewählt und näher analysiert; eine Übertragbarkeit auf Deutschland wurde geprüft. Abschließend wurden Empfehlungen für nächste Schritte abgeleitet. Quelle: Forschungsbericht
Das Projekt "Chemie und Mikrophysik des Nebels" wird vom Umweltbundesamt gefördert und von Universität Frankfurt, Zentrum für Umweltforschung durchgeführt. Es sollen ein Nebelsammler und ein Wolkenwassersammler konstruiert werden. Der Nebelsammler soll fuer den vollautomatischen Betrieb (Einsatz in Messnetzen) konzipiert werden. Wesentlich hierbei wird die experimentelle Bestimmung der Sammeleigenschaften sein (Abscheidecharakteristik, Durchsatz), die fuer die bisher in Europa eingesetzten Sammler in der Regel nicht bekannt sind. Die entwickelten Sammler sollen in einer Nebelkammer (ECN, Petten) sowie in Feldexperimenten ausfuehrlich getestet werden, wobei neben der Fluessig- und Gasphase auch die feste Phase zu erfassen ist, um die gemessenen physikalischen Parameter mit Modellrechnungen (Prof.F.Herbert, W.Wobrock) vergleichen zu koennen. Auf dem Kleinen Feldberg soll nach amerikanischem Vorbild (V.Mohnen) eine Pilotstation mit den entsprechenden amerikanischen standardisierten Geraeten betrieben werden.
Das Projekt "Biomass fluidised bed gasification with in situ hot gas cleaning (AER-GAS II)" wird vom Umweltbundesamt gefördert und von Zentrum für Sonnenenergie- und Wasserstoff-Forschung Baden-Württemberg durchgeführt. Objective: The project aim is a low-cost gasification process with integrated in-situ gas cleaning for the conversion of biomass into a product gas with high hydrogen concentration, high heating value and low tar/alkali/sulphur concentration in one process step for s ubsequent power production. The proposed process uses in-situ CO2 capture (AER, Absorption Enhanced Reforming). It is more efficient than conventional gasification due to (i) the in-situ integration of the reaction heat of CO2 absorption and water-gas shif t reaction heat (both exothermic) into the gasification and (ii) the internal reforming of primary and secondary tars, which cuts off the formation of higher tars. Thus, the chemical energy of tars remains in the product gas. The product gas after dust rem oval can directly be used in a gas engine for electricity generation. Due to the low operation temperature (up to 700 C) and due to CaO-containing bed materials, the proposed process allows the use of problematic feedstocks such as biomass with high minera l and high moisture content, e.g. straw, sewage sludge, etc., leading to an increased market potential for biomass gasification processes. Screening/development of absorbent materials with high attrition stability and tar cracking properties will be carrie d out. Analysis of tar formation/decomposition process will be studied in a lab-scale fixed bed reactor and a 100 kWth circulating fluidised bed reactor (continuous mode). With the acquired data, the 8 MWth biomass plant at Guessing, Austria, will be opera ted with absorbent bed material in order to prove the feasibility of a scale-up and to assess the economical aspects of the process. In order to point out the market potential, the cost reduction of the AER technology will be quantified in comparison with the conventional gasification power plant. Expected results will be: (i) a broad knowledge of the proposed process and (ii) a low-cost technology for biomass gasification with subsequent power production.
Das Projekt "Palaeo-Evo-Devo of Malacostraca - a key to the evolutionary history of 'higher' crustaceans" wird vom Umweltbundesamt gefördert und von Universität Greifswald, Zoologisches Institut und Museum, Abteilung Cytologie und Evolutionsbiologie durchgeführt. In my project I aim at a better understanding of the evolution of malacostracan crustaceans, which includes very different groups such as mantis shrimps, krill and lobsters. Previous studies on Malacostraca, on extant as well as on fossil representatives, focussed on adult morphology.In contrast to such approaches, I will apply a Palaeo-Evo-Devo approach to shed new light on the evolution of Malacostraca. Palaeo-Evo-Devo uses data of different developmental stages of fossil malacostracan crustaceans, such as larval and juvenile stages. With this approach I aim at bridging morphological gaps between the different diverse lineages of modern malacostracans by providing new insights into the character evolution in these lineages.An extensive number of larval and juvenile malacostracans is present in the fossil record, but which have only scarcely been studied. The backbone of this project will be on malacostracans from the Solnhofen Lithographic Limestones (ca. 150 million years old), which are especially well preserved and exhibit minute details. During previous studies, I developed new documentation methods for tiny fossils from these deposits, e.g., fluorescence composite microscopy, and also discovered the first fossil mantis shrimp larvae. For malcostracan groups that do not occur in Solnhofen, I will investigate fossils from other lagerstätten, e.g., Mazon Creek and Bear Gulch (USA), or Montceaules- Mines and La-Voulte-sur-Rhône (France). The main groups in focus are mantis shrimps and certain other shrimps (e.g., mysids, caridoids), as well as the bottom-living ten-footed crustaceans (reptantians). Examples for studied structures are leg details, including the feeding apparatus, but also eyes. The results will contribute to the reconstruction of 3D computer models.The data collected in this project will be used for evaluating the relationships within Malacostraca, but mainly for providing plausible evolutionary scenarios, how the modern malacostracan diversity evolved. With the Palaeo-Evo-Devo approach, I am also able to detect shifts in developmental timing, called heterochrony, which is interpreted as one of the major driving forces of evolution. Finally, the reconstructed evolutionary patterns can be compared between the different lineages for convergencies. These comparisons might help to explain the convergent adaptation to similar ecological niches in different malacostracan groups, e.g., life in the deep sea, life on the sea bottom, evolution of metamorphosis or of predatory larvae.As the project requires the investigation of a large number of specimens in different groups, I will assign distinct sub-projects to three doctoral researchers. The results of this project will not only be published in peer-reviewed journals, but will also be presented to the non-scientific public, e.g., during fossil fairs or museum exhibitions with 3D models engraved in glass blocks.
Das Projekt "Water use characteristics of bamboo (South China)" wird vom Umweltbundesamt gefördert und von Universität Göttingen, Burckhardt-Institut, Abteilung Waldbau und Waldökologie der Tropen durchgeführt. Bamboos (Poaceae) are widespread in tropical and subtropical forests. Particularly in Asia, bamboos are cultivated by smallholders and increasingly in large plantations. In contrast to trees, reliable assessments of water use characteristics for bamboo are very scarce. Recently we tested a set of methods for assessing bamboo water use and obtained first results. Objectives of the proposed project are (1) to further test and develop the methods, (2) to compare the water use of different bamboo species, (3) to analyze the water use to bamboo size relationship across species, and (4) to assess effects of bamboo culm density on the stand-level transpiration. The study shall be conducted in South China where bamboos are very abundant. It is planned to work in a common garden (method testing), a botanical garden (species comparison, water use to size relationship), and on-farm (effects of culm density). Method testing will include a variety of approaches (thermal dissipation probes, stem heat balance, deuterium tracing and gravimetry), whereas subsequent steps will be based on thermal methods. The results may contribute to an improved understanding of bamboo water use characteristics and a more appropriate management of bamboo with respect to water resources.
Das Projekt "Phase 1: Earth and Space Based Power Generation Systems" wird vom Umweltbundesamt gefördert und von Deutsches Zentrum für Luft- und Raumfahrt, Institut für Technische Thermodynamik, Abteilung Systemanalyse und Technikbewertung durchgeführt. This study has to be understood in the frame of the global Energy Policy. A great part of world energy production is currently based on non-renewable sources: oil, gas and coal. Global warming and restricted fossil energy sources force a strong demand for another climate compatible energy supply. Therefore, fossil energy sources will nearly disappear until the end of this century. The question is to find a viable replacement. By using viable' it is meant a low-cost and environmental friendly energy. In other words, the question is to find an alternative to nuclear energy among all proposed but still not mature renewable energies. One of the solutions proposed is solar energy. Yet, two major concerns slow down its development as an alternative: first, it lacks of technological maturity and secondly it suffers from alternating supply during days and nights, winters and summers. The idea proposed by Glaser in the sixties to bypass this inconvenient is to take the energy at the source (or at least, as near as possible): in other words, to put a solar station on orbit that captures the energy without problems of climatic conditions and to redirect it through a beam to the ground. That is the concept of Solar Power Satellites. Its principal feasibility was shown by DOE / NASA in 1970 years studies (5 GW SPS in GEO). Project objectives: This phase 1 study activity is to be seen as the initial step of a series of investigations on the viability of power generation in space facing towards an European strategy on renewable, CO2 free energy generation, including a technology development roadmap pacing the way to establish in a step-wise approach on energy generation capabilities in space. The entire activity has to be embedded in an international network of competent, experienced partners. As part of this, an interrelationship to and incorporation of activities targeting the aims of the EU 6th FP ESSPERANS should be maintained. In particular, the activities related to following objectives are described: The generation of scientifically sound and objective results on terrestrial CO2 emission free power generation solutions in comparison with state-of-the-art space based solar power solutions The detailed comparison and trades between the terrestrial and the space based solutions in terms of cost, reliability and risk The identification of possible synergies between ground and space based power generation solutions The assessment on terrestrial energy storage needs by combining ground based with space based energy generation solutions The investigation of the viability of concepts in terms of energy balance of the complete systems and payback times.
Das Projekt "Clean Seas: Analysis of ERS SAR Data Acquired Over the Ocean and Comparison with Oceanic and Atmospheric Models" wird vom Umweltbundesamt gefördert und von Universität Hamburg, Zentrum für Meeres- und Klimaforschung, Institut für Meereskunde (IfM) durchgeführt. The Research Group Satellite Oceanography of the Institute of Oceanography, University of Hamburg, is participating in the joint international project CLEAN SEAS, a three year investigation of marine pollution monitoring using satellite-borne instruments. The participants of CLEAN SEAS are dealing with the following activities: Collection of ERS-2 SAR images of the Baltic Sea, North Sea, and the Golfe du Lion Classification of oceanic features Comparison of these features Input for compilation of meta databases Comparison with products of other sensors (e.g., AVHRR, SSMI).
Das Projekt "Impact of silviculture on species diversity in forests in Germany" wird vom Umweltbundesamt gefördert und von Universität Hamburg, Arbeitsbereich für Weltforstwirtschaft und Institut für Weltforstwirtschaft des Friedrich-Löffler-Institut, Bundesforschungsinstitut für Tiergesundheit durchgeführt. Objectives: Focus of investigations is in development of species and ecosystem diversity (alpha-, beta- and gamma-diversity) as well as on ecological and population biological processes on landscape and ecosystem levels. The project asks questions on the function of forest management and landscape units for dispersal and establishment of typical forest plants (herb, shrub and tree layer), in particular on the exchange of diaspores (dispersal units) and the recolonization of biocoenologically impoverished, partly fragmented forest ecosystems. We will also check to what extent species or species groups and habitat structures can be used as indicators for monitoring of biological diversity in forests on landscape level. Major questions are: (1) How to maintain or re-create a biological diversity that is typical and as large as possible for the respective forest ecosystem? (2) What spacious effects does forest management have for the biological diversity at landscape level? (3) Which role do wild animals (e.g. hoofed game, birds) play in the diaspore dispersal of vascular forest plants? (4) How can the biological diversity be monitored with simple methods? Results: - The comparison of the recent and the ancient forest cover shows in total an increasing forest area of 636 ha. On the soils of the ground and terminal moraines deforestation exceeds by far the reforestation (balance -544ha). On the sander the afforestation of former heathland, communal pasture and fields increases the forest area round about 1.198 ha. - The rare vascular plant species, selected on the basis of their frequency in the distribution atlas of the flora of Schleswig-Holstein, are mainly found on the nutrient rich and moist sites of the recent moraine, especially in the Alno-Ulmion and the Hordelymo-Fagetum. - A comparison of the presence of the rare vascular plant species with informations in the distribution atlas leads to the presumption of a decrease of the occurence of a lot of these species. The reasons for this are discussed. - The strict relationship of the rare forest vascular plant species to sites with continously forest cover is remarkable. Only 12 of the 72 sites with at least one rare plant species are clearly afforestated agricultaral area. - Hoofed game species transport numerous plant species - partially in large amounts - over relatively long distances, both by the faeces after gut passage (endozoochory) and by adhesion to the coats and hooves (epizoochory). Especially wild boar are of particular importance, as they may potentially disperse almost plant species.
Das Projekt "Solar and Wind Energy Resource Assessment (SWERA)" wird vom Umweltbundesamt gefördert und von Deutsches Zentrum für Luft- und Raumfahrt, Institut für Technische Thermodynamik, Abteilung Systemanalyse und Technikbewertung durchgeführt. The project SWERA will provide solar and wind resource data and geographic information assessment tools to public and private sector executives who are involved in energy market development. It will demonstrate the use of these instruments in investment and policy decision making and build local capacities for their continuous use. The project will enable private investors and public policy makers to assess the technical, economic and environmental potential for large-scale investments in technologies that enable the exploitation of two increasingly important sources of renewable energy. During this pilot project, tools for analysis and use of resource information will be developed, a global archive and review mechanism will be initiated, regional/national solar and wind resource maps generated and national assessment demonstrations performed. The overall goal is to promote the integration of wind and solar alternatives in national and regional energy planning and sector restructuring as well as related policy making. The project will enable informed decision making and enhance the ability of participating governments to attract increased investor interest in renewable energy. Thirteen countries will be directly involved in the pilot stage of the project. Global and regional maps will be available to all developing countries. The German Aerospace Center (DLR) will provide high resolution solar maps of the Direct Normal Irradiation. This is particularly important for concentrating solar power collectors. DLR will work with SUNY and INPE/LABSOLAR to integrate their high-resolution horizontal total radiation model. DLR and TERI will jointly execute the South Asian mapping using INSAT and METEOSAT-5 data. DLR will provide advice to national executing agencies and stakeholders on their activities and assist in the comparison of measurements and different mapping models.
Das Projekt "Ecological Land Use Planning and Sustainable Management of Urban and Sub-urban Green Areas in Kota Kinabalu, Malaysia" wird vom Umweltbundesamt gefördert und von Universität Göttingen, Burckhardt-Institut, Professur für Naturschutz und Landschaftspflege durchgeführt. Malaysia has been identified as one of the worlds mega diverse countries being extremely rich in biodiversity. Tropical rainforests, the oldest and most diverse ecosystems on earth, still cover an average 60 Prozent of the country (Soepadmo, 1998). The rainforests are estimated to contain about 12,500 species of flowering plants, and more than 1,100 species of ferns and fern allies (MSET, 1998). The dominating plant family is dipterocarp trees many of which produce commercial timber being native to Borneo as well as to Peninsular Malaysia, Indonesia, Philippine, Thailand etc. Large portions of these species are endemic and uniqueto the Malaysian archipelago.There is also great diversity in fauna, including about 300 species of wild mammals, 700-750 species of birds, 350 species of reptiles, 165 species of amphibians and more than 300 species of freshwater fish. Endemism in flora and fauna is high. As with other cultures, it is assumed that much of the traditional knowledge about these flora and fauna are heritage of the many traditional societies and communities that are dependent on them for their livelihood (Soepadmo, 1998).Unfortunately, much of Sabahs natural vegetation has been altered and degraded due to unsustainable and destructive human practices. Their existence continues to be threatened. Certain forest types are in danger of being totally eradicated from Sabah, while many plant species will likely disappear before they have ever been described. The fragmentation of natural forests also threatens the viability of various wildlife populations. The State is undergoing rapid development and the transformation of rural areas into urban is also accelerating. Many green areas are lost which causes serious threats to biodiversity in the country, because green areas play a very important role in buffering negative impacts on conservation areas.The objective of this study is to provide the information for developing a concept for sustainable urban green management in Kota Kinabalu district as well as to judge the ecological sustainability and to describe the importance of urban green area for the public. A focus is placed on the terrestrial and aerial inventory of the natural resources, including trees, birds, and biotopes. Furthermore, the study tries to explore the perception and attitude of local people, concerning urban forests and green areas. It also explores and investigates the possibilities for implementing an urban green management concept.The terrestrial data collection accordingly comprises of four fields: (1) tree inventory/survey, (2) bird survey/observation, (3) public perception survey, and (4) the mapping and classifying of urban forest functions.i).
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