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 TERMINÉ 
The overall objective of FISSAC project is to develop and demonstrate a new paradigm built on an innovative industrial symbiosis model towards a zero waste approach in the resource intensive industries of the construction value chain, tackling harmonized technological and non technological requirements, leading to material closed-loop processes and moving to a circular economy.A methodology and a ...
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 TERMINÉ 

Design for Resource and Energy efficiency in cerAMic kilns (DREAM)

Date du début: 1 oct. 2016, Date de fin: 30 sept. 2019,

The DREAM project aims to design, develop and demonstrate a radically improved architecture for ceramic industrial furnaces, characterised by optimised energy consumption, reduced emissions, and lower operating costs compared to currently available technological solutions. This will be obtained by substantially enhancing specific furnace parts (control system, refractories, emissions abatement sys ...
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 11

 TERMINÉ 
The overall scope of the DAPhNE project is to develop and demonstrate a package of integrated solutions for energy intensive processes (ceramics, cement and glass), based on tuning micro-wave technologies to the material characteristics and on intelligent control systems, to provide real time information about the energy consumption as well as the product quality.Microwave heating is now a well e ...
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 18

 TERMINÉ 
Bioresistancy of building and finishing materials usually requires addition of dedicated bioactive chemicals, so-called biocides. The usual increase in biocide concentration only results in a minor prolongation of the material service-life. For example, coatings usually exhibit biocidal functionality between 0.5 and 2 years – depending on environmental loads –, whereas the desired service life in ...
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 10

 TERMINÉ 
Recent work has shown the possibility to drastically increase the reflection performance of the building envelop, using nanotechnologies. Standard metal oxides are already known for their solar reflection properties, but latest developments identified that nanotechnologies can improve Index of Reflectance from an average of 0,35 to 0,85 because of their effectiveness on Near Infrared wavelengths, ...
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