A collection of case histories of successful collaborations between High Technology Network Laboratories and businesses. These are tangible and customisable examples of the application of new technologies, products, or services that show how industrial research can meet the needs of innovation.

Results: 9

ENERGYNIUS - Energy Networks Integration for Urban Systems

A new paradigm for urban energy systems

Energy systems are undergoing a transition towards new planning and management models in which energy networks (heat, electricity, gas, transports, etc.) will be integrated with each other to maximise possible synergies (Smart Energy Systems).

The...

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SINTERED ULTRA-HIGH TEMPERATURE CERAMIC MATRIX COMPOSITES

The most resistant materials in the world for space field

In the aerospace and fast transport sectors there is a growing demand for advanced structural materials capable of withstanding temperatures over 1500 °C in highly corrosive environments. Rocket nozzles and thermal protection systems for spacecraft...

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Chemically Bonded Ceramics

Geopolymers for sustainable a high tech

Geopolymers are synthetic inorganic polymers based on aluminosilicates or phosphates and chemically bonded at T <300 ° C. This technology enables the production of materials with properties of certain ceramic materials with the same approach of...

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Production technology of transparent ceramics for high power laser applications

Flexible process ready to be transferred at industrial scale

Transparent ceramic materials are fundamental as sources of laser radiation, especially for high efficiencies and emission in the infrared wavelenghts (typically in the region of 1010 to 1080 nm). The transparent ceramic material that has reached the...

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Production of porous ceramic materials

Porous ceramics: sustainable and multifunctional materials

Processes for the production of ceramic-based articles with controlled porosity in terms of volume, morphology, size, interconnection, 3D distribution. ISTEC manufactures ceramic or hybrid architectures with functional porosity (multidimensional from...

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Residue recovery from waste treatment processes

Recovery of materials and energy from waste, reuse of materials, optimisation of treatment processes and of integrated waste management systems

To contribute to identify the most effective choices towards a sustainable waste management, the MatER Study Center provides technical and scientific consultancy based on a thorough survey of the technologies and policies adopted for recovering...

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Technical and economic assessment and energy capability verification of renewable energy plants

Analysis and control of the technical and economic factors that affect investments in renewable energy plants

The technical and economic assessment of plants producing electrical and/or thermal energy from renewable sources (biomass, wind, photovoltaic, hydroelectric) is essential to design the plant itself and monitor its performance. The system's...

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Monitoring ultra-fine particulate and nano-particulate in urban areas

Identification of highly critical urban areas for air quality

Due to the proximity to emissions from vehicular traffic, recognised as the main source of fine and ultra-fine particulate in urban areas, individuals moving on foot or with other means of transport in a town are potentially exposed to high...

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Monitoring fine and ultra-fine dust from combustion plants

Characterisation of nanoparticles emitted by combustion systems

On site surveys to assess emissions from combustion processes in stationary plants (small thermal power plants for building heating fuelled by wood, pellet, oil and gas and industrial plants for WTE incineration of waste), ultrafine particulate...

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