Suchergebnisse für "Factsheet: Energietechnologien gestalten, die für alle sinnvoll und nutzbar sind"
Ressourceneffizienzsteigerung durch experimentelle Optimierung von Wärmebehandlungsprozessen der metallverarbeitenden Industrie
Die Optimierung des Energieeinsatzes bei der Herstellung von ölschlussvergütetem Draht soll durch experimentelle Untersuchungen der Möglichkeiten der Abwärmenutzung der Öfen und durch bessere Wärmedämmung an den Bädern sowie der Untersuchung von Möglichkeiten Blei aus dem Anthrazit auszuscheiden erfolgen.
Entwicklung einer kontinuierlichen Wasserstoff-Carbon Nanotubes Demo-Produktionsanlage
Mit der Entwicklung einer kontinuierlichen Wasserstoff-Kohlenstoffnanofasern Produktionsanlage werden wirtschaftlich Kohlenstoff-Nanofasern produziert und gleichzeitig Zugang zu umweltschonend produziertem Wasserstoff geschaffen.
Entlacken als Dienstleistung
Entwicklung der Dienstleistung der Entlackung in industriellen Oberflächenbehandlungsanlagen auf Basis von impulsgesteuertem Hochdruckwasser mit neuartiger, energieeffizienter Hochdruckwasserpumpe. Suche und Evaluierung von weiteren Anwendungsmöglichkeiten.
THECLA Thermoelektrizität in Clathraten
Abwärme als wertvolle Energiequelle der Zukunft
Development of criteria for the communication of energy efficiency for classifying plastics processing machines
The aim of this project is the development of a measuring standard for the energy demand and efficiency criteria for classifying plastics processing machines. Based on this a communication instrument for the energy efficiency shall be developed.
Green Biorefinery - Phase 3: Development of technologies for intensification of process concerning extraction and utilisation of lactic acid, amino acids and gras fibres
Optimisation of downstream processing of a Green Biorefinery for separating lactic acid and amino acids out of silage juice applying chromatography; fundamental test for utilising the fibre fraction for hydro-greening and for horticulture substrate.
THECLA
De-lacquering as a service
Development of the service of de-lacquering in industrial plants on the basis of pulsed high pressure water with a new, energy efficient high pressure pump. Further possible applications will be searched for and evaluated.
Information systems for ecological industry clusters - Case study industrial region Mödling (Lower Austria)
Development of a comprehensive, transparent and user-friendly concept of enhanced interlinkage of material and energy flows through increased information exchange and shows the resulting pollution reducing in conjunction with economic benefits for the companies.
Solar thermal cooling system consisting of a parabolic trough collector field and a steam jet ejector chiller
A solar thermal cooling system consisting of a parabolic trough collector field and a steam jet ejector chiller has been developed. The necessary components were built and tested and finally put together to get an operating pilot plant at the test facility.
Waste heat utilisation and use of renewable energy sources in a metal-working enterprise
Use of waste heat and covering of the remaining energy demand by the renewable energy sources hydropower and biomass in a metal-processing company.
Pilot-Biogas plant consisting of prefabricated units
Construction of a biogas tank built of prefabricated reinforced concrete elements, erected and operated at an existing biogas plant in Bruck an der Leitha. The precast concrete technology promised a lot of advantages but also posed a lot of questions that had to be solved. These problems considered especially the sealing method and the general construction with precast concrete elements.
Ecologically friendly resin impregnation of rotating machines with the use of the joule effect
Windings of rotating machines or electrical generators (e. g. wind and water power generators) are impregnated with resin. A new technology using the heating effect of current is investigated. The high efficiency of heating with the joule effect results in quick heating of stator leading to fast gelling of the resin, which implies low emission.
Development of a continuous hydrogen-carbon nanofibers production line
With the development of a hydrogen-carbon nanofiber production in a continuous process carbon nanofibers can be produced in an economic way and at the same time access to environmentally friendly hydrogen is enabled.
EasyCell - Design optimization of PEM fuel cells for reducing auxilliaries and simplificating the material-management to facilitate the mass production
EasyCell - A common use of PEM fuel cells is not yet established. It is the aim of this project to optimize the design of PEM fuel cells (minimization of peripheral units, simplified handling of gases and the right design for mass production) to ease a widespread use of PEM fuel cells.
Raising efficiency by an optimized filters purification system using waste heat in metal industry
Purification and disposal of production effluents in waste water from metal manu¬fakturing processes is of economical and ecological importance for the Joh. Pengg AG. Econamical solutions for optimised purification of the filter textiles and the drying of the filter cake with waste heat have been found.
PROMISE - Production with solar energy. Study on the potential of thermal solar energy systems in trade and industry depending on the production processes
Documentation of realized plants for the use of thermal solar energy in trade and industry companies. Identification of production processes and branches, which have a demand for low-temperature heat. Determine the potential of solarthermal systems to provide low-temperature heat. Case studies for branches and processes with the highest mid-term potential for realization of a solar plant.
Application of the Stirling cycle for environmentally compatible cooling - systems analysis
Conventional cooling has adverse effects on environment (eg. ozone depletion, global warming). One option for environmentally compatible cooling systems for near ambient temperatures (-10 to -50°C) is the Stirling cooler with environmental friendly process.
Development and optimization of a parabolic trough solar collector for generation of process heat for industrial processes
Development and optimization of a parabolic trough solar collector for generation of process heat for industrial processes. The operating performance and optimization possibilities of a prototype were evaluated and an improved prototype was tested with respect to its efficiency characteristics as well as in a small-scale application with a realistic load profile.
Raise in efficiency due to optimized waste heat management in heat intensive processes of the metal-working industry
This project drives at optimizing the energy input at the manufacturing process of oil tempered spring steel. This aim is met by investigating different options of waste heat recovery from industrial furnaces and heat insulation of heat treatment bathes. Besides, options of lead removal from anthracite will be listed.