The natural capital of forests consists to a great extend of the forests environmental functions for human well-being, which not only include goods and services (source and sink functions) but also include life-support functions that reflect ecosystem performance (ecosystem functioning). Shifting the management approach from a traditional one to one that is more aware of the ecosystem complexity, the idea of 'ecosystem functioning is appearing to tackle gradual declines of ecosystem functions. Within CBDs framework, the Ecosystem Approach has been introduced on account of the necessity for open decision making with strong links between all stakeholders and the latest scientific knowledge due to uncertainty and unpredictability in nature. The Ecosystem Approach is still in need of further elaboration, even though as a concept Ecosystem Approach has been widely accepted. To aim forest enhancement, this approach has been regarded as the most feasible concept for the study area, the Bengawan Solo River Basin - Java, Indonesia. Therefore the principles and operational guidelines will be used to analyse and evaluate the current forest management in those areas of the Bengawan Solo River Basin, in which ecosystem function is the basis for forest development area. This research focuses on ecological functions of forests at various levels of ecosystem management planning, from the forestry sectors point of view.
Im April 2012 führte PUMA das Rücknahmesystem Bring Me Back ein. Seither können Kunden in PUMA Stores weltweit gebrauchte Produkte zurückgeben, die dann durch die Firma I:CO der Weiterverwendung und Verwertung zugeführt werden. Auch die Produkte der neuen recyclefähigen und biologisch abbaubaren PUMA-InCycle-Kollektion, die seit März 2013 auf dem Markt sind, werden so erfasst. Hierzu gehört etwa das recycelbare PUMA Track Jacket, das zu 98 Prozent aus Polyester aus gebrauchten PET-Flaschen besteht. Der PUMA-Rucksack aus Polypropylen wird nach Gebrauch an den ursprünglichen Hersteller zurückgegeben, der das Material wieder zu neuen Rucksäcken verarbeitet. Durch solche Neuentwicklungen will PUMA seine Planungs- und Entscheidungsbasis verbessern. Deshalb hat sie bifa mit der Analyse abfallwirtschaftlicher Optionen für gebrauchte PUMA Produkte beauftragt. bifa untersuchte hierzu Referenzprodukte und Optionen für die Erfassung und Sortierung von Produkten und Materialien. 35 Pfade mit unterschiedlichen Verwertungs- und Beseitigungsansätzen wurden entwickelt und bewertet. Die Realisierungschancen der Pfade wurden dann dem zu erwartenden Nutzen insbes. für die Umwelt gegenübergestellt. Dabei wurde zwischen gut entwickelten und wenig entwickelten Abfallwirtschaften (Waste-Picking-Szenario W-P-Szenario) unterschieden. Es zeigte sich, dass Pfade, die im Szenario Abfallwirtschaft ökologisch nachteilig sind, im W-P-Szenario durchaus vorteilhaft sein können. Im W-P-Szenario sind zudem Pfade realisierbar, die in entwickelten Abfallwirtschaften keine Chance hätten. Die moderne Abfallverbrennung ist für W-P-Szenarien ökologisch vorteilhaft, aber dennoch eine schwierige Option. In entwickelten Abfallwirtschaften sollten Sammlung und Wiedereinsatz gebrauchter Schuhe und Textilien weiterentwickelt werden. Die folgenden generellen Empfehlungen wurden gegeben: - Der Einsatz von Recyclingmaterialien in PUMA-Produkten ist aus ökologischer Sicht zu empfehlen. Diese Erkenntnis wird auch durch die Ergebnisse der ersten ökologischen Gewinn-und-Verlust-Rechnung von PUMA belegt. Über die Hälfte aller Umweltauswirkungen entlang der gesamten Produktions- und Lieferkette des Unternehmens werden bei der Herstellung von Rohmaterialien verursacht - Das Produktdesign sollte auch für bestehende Verwertungspfade optimiert werden, da realistischerweise nur ein Teil der Produkte über das Sammelsystem erfasst werden kann - Die ökologischen Vorteile von Produkten, die aus nur einem Material bestehen, kommen nur dann zum Tragen, wenn das Produkt nach Gebrauch aussortiert und das Material tatsächlich recycelt wird - Biol. abbaubare Produkte können auch Nachteile haben, zum Beispiel die schnellere Entwicklung von klimaschädlichem Methan bei ungeordneter Deponierung - Eine Verlängerung der Produktlebensdauer über den gesamten Lebenszyklus einschl. der Verwendung als Gebrauchtprodukt ist der effektivste Weg, Umweltlasten zu reduzieren. Meth. Ökobilanzierung und Systemanalyse (Text gekürzt)
The rational calculus of farmers assumed in many agricultural economic models is unrealistic and non-predictive of their actual decision making. Understanding structural change in agriculture can thus be improved via a realistic modeling of the decision making by agricultural entrepreneurs. Specifically, slow disinvestment (i.e., postponing farm exit), persistence of market structures (i.e., failure to reallocate land plots towards higher efficiency), and more generally characterizing the decision making of farmers are crucial for a better understanding of structural change and policy advice. We apply economic experiments to better understand such disinvestment choices, land markets with economies of scale and private opportunity costs, different auction and bargaining forms to improve allocation efficiency of land markets, and to generally characterize the decision making of farmers.
Water supply pipes, sewers and wastewater treatment plants are in need of renovation in many places. However, current water policies in Switzerland are inadequate for the durable and strategic planning of such infrastructure. How must tools and planning processes be adapted to the changes in nature and society? Background Infrastructure in the water sector should be as long-lived as possible. However, its planning is very complex: extreme events such as droughts and floods should be taken into account to the same extent as the increasing water demand or the demographic development. Also, the stakeholders are to be included in the decision making processes. The division of waste water disposal and drinking water supply into separate organizational entities is a weak point in the planning process. Instruments are available to identify infrastructural flaws in a municipality and to recommend investment plans. But they do not make long-term planning possible - amongst other things because the necessary tools are not available. Objectives and methods Decision making support will be developed so that the long-term planning of water supply and wastewater treatment infrastructure can be improved. The project will strive for a balance between economic costs, ecological aspects and social values. Special attention will be given to the fact that many communities have only limited data concerning their infrastructure and that future developments cannot be predicted with certainty. Subjective preferences of the various policy-makers will be integrated by means of a multi-layered decision analysis. Decision making support will be developed and validated in several municipalities, together with the practically-oriented partners. Significance The tools that will be developed assist the transition from problem-based 'repairs' to foresighted planning of water infrastructure. The stakeholders participating in the case studies will be sensitized for planning issues by being included in a forward-looking, joint planning process. This approach can be adapted to other difficult decision-making situations in which many different stakeholders are involved.
This project aims to provide improved process understanding, new knowledge, methods, new and improved numerical tools, resulting in decision support systems serving decision-making at protection of coasts against flooding and erosion. Project resultys will contribute to improve reliability of coastal protection structures, and introduce an environmentally friendly approach in coastal protection. The activities will focus on work-out/improve/coordinate numerical model tools that are able to manage interactive data and forecast (by numerical simulations) short term (storm surge, tsunami) and long term (erosion, water level change) phenomena with respect to coastal protection. Project objectives will be pursued by exploring the available experience of the partners, creating complementarities /synergies between them, and using basic preconditions, as follows: - Scientific potential of all partners, the available theoretical knowledge, and expected new findings in the field of coastal hydrodynamics and flooding and - Long-term research cooperation with Chinese partners (dated from 1989) in the field of coastal protection (including some joint model developments, and published papers) - Experience in use of advanced numerical models (MIKE FLOOD, MIKE 21HD/CAMS, SWAN, VOF), as well as GIS data handling abilities, providing links to field observations and related monitoring programs - Well proven expertise in the field of coastal protection & risk management (via EU Coastal protection Projects: EU-FLOWS/FLOODsite/DELOS/CLAS and other - Experience in Environmentally Friendly Coastal Protection, advanced & innovative coastal technologies. Project output should finally help decision makers in: - improving co-ordination of coastal erosion and surface water flood risk - strengthening emergency planning arrangements - managing the investment of significant levels of public funding - helping communities adapt to climate change.
Wie kann Klimapolitik gestaltet werden, welche Auswirkungen hat sie und welche anderen Möglichkeiten gibt es? Dies sind wichtige Fragen für Stakeholder und Entscheidungsträger. Das POLIMP Projekt hat zum Ziel, Antworten darauf leichter zugänglich und verständlich zu machen. Deshalb analysiert POLIMP Wissenslücken auf verschiedenen Politik- und Entscheidungsebenen, und versucht diese mit Hilfe von bereits vorhandenen Forschungsergebnissen zu schließen. Die Ergebnisse werden verbreitet und diskutiert, z.B. durch Veranstaltungsreihen, Veröffentlichungen und eine interaktive online Wissensplattform. Das Ecologic Institut leitet das Arbeitspaket Wissensplattform . Im Anschluss an die Identifikation von Wissenslücken ist es das Ziel, Informationen interaktiv und zielgruppengerecht an die Stakeholder zu vermitteln. Das Ecologic Institut arbeitet außerdem im Bereich Stakeholder-Beteiligung und entwickelt Evaluationskriterien für Szenarien zur zukünftigen Entwicklung der internationalen Klimaverhandlungen.
The Network of Excellence, ECATS, will be a durable and long lasting means of cooperation and communication within Europe, made up of a number of leading Research Establishments and Universities who have expertise in the field of aeronautics and the environment. ECATS's vision is to contribute to the environmental goals of the Vision 2020 for Aeronautics and the Strategic Research Agenda. The overall goals of ECATS are to create a European Virtual Institute for research of environmental compatible air transport; to develop and maintain durable means for cooperation and communication within Europe and to strengthen Europe's excellence and its role of the influence in the international community. The Joint Research Programme will take into account engine technology, alternative fuels, aviations impact on air quality, operational aspects of aviation, and the development of scenarios. Lasting integration will be achieved by joint management and working structures, joint-decision making processes and will be supported through specific integration activities as a common web-based information and communication system, common education, training and exchange programmes, coordinated use of facilities and equipment, dissemination and joint management of innovation. The excellence and commitment of the ECATS partners, many of whom are already linked through their participation in AERONET, will guarantee an effective and durable integration. Support by community funding will be applied for a period of 5 years. FZK is concentrating on activities in the area of airport air quality.
LCA approaches are part of the broader field of sustainability assessment often connected to different disciplines. To increase the efficacy of sustainability decision making, LCA is to take into account broader externalities, broader interrelations and different application/user needs with often conflicting requirements (dynamic models; integration of environmental, economic, and social aspects; accessibility and user friendliness, etc). Roughly, development should be oriented to: - 'deepening', to improve reliability and usability by more adequately incorporating empirical mechanisms - 'broadening', to improve the significance, by expanding the scope of sustainability impacts and better linking to neighbouring models - 'leaping forward' by a revision/enrichment of foundations, through the crossing with other disciplines for sustainability evaluation. CALCAS develops analysis and development along two lines: 1 science framework; 2 user needs (Industry, Research organisations, Government, Consumers, NGOs); the results, are crossed to draw up mid- long-term research lines and road maps, including measures for implementation. Advanced results will often not be in line with the current ISO14040 series definitions and requirements on LCA, creating a need for reformulation. Partnership combines LCA 'producers' and 'users' and involves, with different responsibilities, a significant and highly qualified part of European scientists. Thus, the project promotes the networking both 'cross', among the scientific sectors, and 'vertical' between them and users. Expert working groups, cross-fertilisation workshops, and an open consultation of all scientific sectors and users, based on a Blue Paper combining intermediate proposals are inputs to the final results, both as described models and tools and as research tasks to be accomplished. They also promote dissemination and joint actions for training, knowledge exchanges and common projects. Prime Contractor: Ente per le Nuove Tecnologie, l'Energia elL'Ambiente; Roma; Italy.
Ziel von EKLIPSE ist es, Akteure aus Wissenschaft, Politik und Gesellschaft zusammenzubringen, um sicherzustellen, dass Entscheidungen, die Auswirkungen auf Natur und Umwelt haben, auf einer soliden Wissensbasis getroffen werden. Das Projektteam etabliert einen flexiblen, beständigen - aber innovativen - sowie transparenten Mechanismus, der den Wissensbedarf insbesondere für Entscheidungen adressiert, die Biodiversität und Ökosystemleistungen betreffen. Dieser europäische Mechanismus reagiert auf Anfragen von Politik und gesellschaftlichen Akteuren in diesem Feld.
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