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Klimaneutrale Stadt

Tariffs4all - Participation of the citizens from Bruck in the energy transition for all

The project responds to the challenges of participation in the energy transition in the municipality of Bruck/Mur by exploring the possibilities of Power Purchase Agreements (PPAs), Peer to Peer Trading (P2P Trading) and virtual metering points for generation plants be developed and implemented as a basis for new tariff/financing models.

Energiesysteme der Zukunft

Technological as well as economical optimized Biomass CHP systems with regard to state-of-the-art technologies.

Analysis and presentation of representative biomass CHP systems with an electric power output of less than 2 MW. Variation of parameters and identification of potential optimized interactions between specific units. Identification of the economically and thermodynamically most optimized interconnection based on state-of-the-art technologies.

Haus der Zukunft

Technology Platform Photovoltaic Austria

Between research institutions and the economic system the way has been paved to initiate joint R&D projects. Common research activities have been initiated and intensified to be able to position local companies in international niche markets for photovoltaics.

Energiesysteme der Zukunft

Technology transfer for market introduction of multifunctional photovoltaic solar façade systems

Technology and know how transfer for market introduction of multifunctional photovoltaic solar façade systems. Constructional engineering, integration into the buildings´ energy system, economy. Design of an information website and accompanying target group work.

Energiesysteme der Zukunft

Technology, logistics and economy of large-scale fermentation gas facilities on the basis of biogenous waste

Examination of the logistic, technological and economic feasibility of large-scale fermentation gas facilities. Development of solutions for substrate procurement, plant technology, utilization of the organic remainders of the facilities and poly generation in combination with industrial plants.

Klimaneutrale Stadt

Ternitz 2040

The town of Ternitz has been a Climate Alliance municipality since 1991, a member of the KEM Schwarzatal region since 2010/2011, an e5 municipality (with 4e) since 2011, and was awarded the title "Energie.Vorbild.Gemeinde" in June 2023 within the LEADER region NÖ-Süd. Key focus areas include the expansion of photovoltaics, the promotion of cycling, public transport and e-mobility, energy efficiency in the public sector, the use of synergies with local industry, and the implementation of energy-efficient residential building concepts.

Energiesysteme der Zukunft

Test stand method for the determination of system efficiency and emission factors of small-scale biomass combustion systems

Determination of key data with practical relevance of typical applications in only one test run. Monitoring of air pollutants and efficiency and continuous improvement of technology possible with test stand method.

Fabrik der Zukunft

Testing the sustainable hospital.

Based on a feasibility study an interdisciplinary team of researchers supports hospital practitioners implementing the concept of sustainable development in a pilot hospital. Changes within three key areas should lead to significant improvements.

Klimaneutrale Stadt

Thannhausen 2.0 - Thannhausen energy district: a role model and testbed for a renewable energy supply for neighbourhoods

Evaluation and testing of different energy distribution approaches in a neighbourhood using direct lines, storage or new legal options through the ElWG (Electricity Industry Act). The project builds on the existing direct line system in Thannhausen and will test different use cases for the (climate-neutral) supply of neighbourhoods there.

Stadt der Zukunft

The Box - Thermal High Performance Decoupling - Next Generation Thermal Break Technology

The project pursues the overall strategic objective "solution of the problem-inducing heat bridge". For this purpose, the thermal bridging losses should be reduced by the factor of 15 in contrast to the state of the art. The significant increase in efficiency should rely on existing system solutions, but incorporating a new holistic view in terms of construction, geometry and materials.

Stadt der Zukunft

The Green Parking Space – Utilization of urban parking areas for production of biomass

Many traffic areas in urban environments are actually used as such only a small fraction of the time. Subject of this project was to investigate the possibility of using those areas by additional integration of photobioreactors for the production of biomass, integrating such systems to the maximum extent into the urban substance and energy cycles.

Nachhaltig Wirtschaften

The Paper Factory in the Year 2030

Paper factory in the year 2030 as an integrated part of a sustainable economy and a supplier of sustainable paper products fulfilling criteria for sustainability at highest possible level.

Haus der Zukunft

The Passive House Catalogue of Building details for renovations

"Building of Tomorrow" funded research reports dealing with building renovation will be analysed for solutions of construction details. This information will be supplemented with structural-physical descriptions, ecological ratings and technical discussions. All the information will be collected and systematically presented in a catalogue of building details for renovation.

Nachhaltig Wirtschaften

The Sahel Project

Silicate technology for the improvement of water uptake and nutrient storage in marginal soils; field tests in the northern Sahel region in Senegal

Nachhaltig Wirtschaften

The Sustainable Hospital

Working together with practitioners scientists from the fields of social ecology, sociology of health and economics introduce the concept of sustainable development into a pilot hospital. The feasibility study establishes the base for ecological, social and economic improvements within the hospital.

Energiesysteme der Zukunft

The Use of wind energy in skiing regions - Evaluation of the consume of electricity and dissemination of the results of the analysis

Main goals of the project are the analysis of the location Salzstiegl concerning the coverage of their own electricity needs with an already existent windmill as well as a following dissemination of the outcome of the analysis in form of a workshop for all ski lift carriers of Austria.

Nachhaltig Wirtschaften

The development of fused wood-only parquet elements

The development of the wood fusing technology to an innovative, ecological process of production of wood-only parquet elements, which do not contain any wood foreign substances as glue or thermoplastics.

Fabrik der Zukunft

The sustainable hospital. Dissemination.

Following two successful "Fabrik der Zukunft" projects on the theme of sustainable hospitals ("Feasibility study" 2004-2005 and "Testing in a pilot hospital" 2006-2008) the results and key findings were disseminated by a diversified dissemination strategy. The project was based on an intensive and successful more than four-year cross-disciplinary cooperation involving the pilot hospital (SMZ Otto Wagner Spital), the Viennese Hospital Association, the Immanuel Diakonie Group (Berlin) and an interdisciplinary team of researchers.

Stadt der Zukunft

TheSIS - Thermal renovation with internal insulation systems - investigation and development of moisture-proof solutions

Development of innovative solutions for the retrofit of the building envelope with internal insulation with a focus on the hygrothermal optimization of a moisture-adaptive vapor retarder in form of a paint coating. As a result, the moisture hazard related to the implementation of internal insulation systems is reduced and the energetic, comfort-related and economic advantages are made available.

Klimaneutrale Stadt

ThermEcoFlow: Innovative technologies and methods for indoor air comfort and energy optimisation in thermal spa buildings

ThermEcoFlow aims to optimize the energy consumption of thermal spas facilities through improved simulation models and AI-supported control systems. By precisely modelling airflow, humidity loads, and evaporation, combined with AI-driven regula­tion, the project seeks to reduce energy consumption and CO₂ emissions in the long term while enhancing indoor comfort for visitors.