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: 10

ADVANCED CARBONS: production and use

Advanced Carbons: from waste to useful materials

The main product of this technology is a char produced through thermochemical treatment of organic waste and functionalized for several specific applications by engineering the functionalization methods.

The service offered includes the recovery...

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Advanced ceramics by 3D extrusion based printing: from the development of ceramic raw materials to the creation of prototypes.

Low cost and sustainable 3D printing of advanced ceramics.

ENEA-TEMAF offers a complete service for the development of advanced ceramic components obtained by 3D printing with the technique based on paste extrusion. The printable ceramic pastes are water-based and characterized by a low organic content (<3%)...

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Digital Light Processing (DLP) 3D printing of ceramics

Shape ceramic materials with 3D printing

The use of 3D printing as a net-shape forming technique for technical ceramics opens the doors to the application of these materials even in sectors where high manufacturing costs prejudiced against their use. The most suitable AM techniques for...

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Thermo-catalytic reforming layout

Thermo-catalytic reforming: adding value to residual biomass and waste by transformation into green hydrogen, bio-oil and biochar

From residues to materials for chemistry and environment

The thermo-catalytic reforming technology TCR® enables added value products such as syngas, green hydrogen, bio-oil and biochar from residual biomass from industries operating in the food, agro, forestry and processing sectors. Such products can be...

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Fiber-reinforced composites for high temperature, based on new semi-finished products (preceramic prepregs) and high sustainable mineral fibers

New fire-resistant and lightweight composite materials

The development of new categories of fiber-reinforced composites aim to satisfy the necessities of transport and construction sectors, to increase both material performance and process sustainability. Since 2010, the laboratory has been developing...

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Thermomechanical characterization of materials and qualification of components. Experimental tests under standard and operating conditions.

Know your material to design the component.

The mechanical characterization leads to define the limits of use of a material for a specific application, identifying its mechanical properties. This activity is performed as an essential part of the development of new processes and materials, and...

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Technologies for manufacturing advanced ceramics / ceramic components for energy and industry

Advanced ceramic materials: new products and innovative production technologies

The use of advanced ceramics is continuously increasing thanks to their peculiar characteristics: lightness, high thermo-mechanical and tribological properties, low thermal expansion coefficient and chemical stability at high temperature or high...

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Ceramics for biomedical Sector / Bioinert ceramics

With that smile you can tell what you want!

ENEA, Faenza Research Laboratories, offers bioinert and biocompatible ceramic materials ( zirconia (ZrO2) e alumina (Al2O3) based composites), suitable to be applied in dental and orthopaedic implant sector and as surgical ceramic blades. ENEA has...

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Synthesis of biodegradable ligands for fertilisers

Synthesis of more sustainable chemical products

Working on the design and synthesis of more environmental friendly chemical products, the Sustainable Chemistry Laboratory of CIRI Energy and Environment has developed expertise on alternative chemicals characterized by both high biodegradability and...

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Application of MFA and LCA analysis for technical-management support to recycling processes

Technical support to closing productive cycles and recycling

In order to optimise material and/or energy recovery processes, it is required to have quantitative data on potential material flows and on their trends over time. For this purpose, a tool such as the Material Flow Analysis (MFA) allows flows to be...

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