IDENER TECHNOLOGIES SL
- Country
- Spain
- Type
- Beneficiary
- Website
- www.idener.es
- Grants received
- 25
Funding record
- 25 grants on record
- €8,680,743.22 awarded in total
- 2012–2020 span of the record
Grants recorded here are the ones our sources publish, and the total is the sum of those. It is not a statement of this organisation's total funding.
Programmes
16 further grants are on record without a programme named by the source, or under a programme outside the largest shown here.
Frequent partners
Organisations this one has been funded alongside on two or more projects. A single shared consortium is not counted: the largest here has 195 members, and being on one list together is not a collaboration.
- FUNDACION TECNALIA RESEARCH & INNOVATION
- TEKNOLOGIAN TUTKIMUSKESKUS VTT OY
- BUREAU DE RECHERCHES GEOLOGIQUES ET MINIERES
- PNO INNOVATION
- SINTEF AS
- VLAAMSE INSTELLING VOOR TECHNOLOGISCH ONDERZOEK N.V.
- FRAUNHOFER GESELLSCHAFT ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG EV
- KATHOLIEKE UNIVERSITEIT LEUVEN
Calls from this organisation
No published calls from this organisation.
Grants received
- Solutions for CRitical Raw materials - a European Expert Network 2
- Closing the loop for urban material flows
- Agent-based support tool for the development of agriculture policies
- A purification/regeneration process of spent plating baths base on functionalized magnetic nanoparticles.
- Ionometallurgy of primary sources for an enhanced raw materials recovery
- Recovery of Tungsten, Niobium and Tantalum occurring as by-products in mining and processing waste streams
- SDN - microgrid reSilient Electrical eNergy SystEm
- Conceptual Study of Electrochemical based novel process using Lignosulfonates to produce bio-based monomers & polymers
- Development of a bifunctional hierarchically structured zeolite based nano-catalyst using 3D-technology for direct conversion of methane into aromatic hydrocarbons via methane dehydroaromatization
- Lignin Biorefinery Approach using Electrochemical Flow
- first of a kind commercial Compact system for the efficient Recovery Of CObalt Designed with novel Integrated LEading technologies
- Near-zero-waste recycling of low-grade sulphidic mining waste for critical-metal, mineral and construction raw-material production in a circular economy
- Biological routes for CO2 conversion into chemical building blocks
- Model-based optimisation for efficient use of resources and energy
- Advanced Filtration TEchnologies for the Recovery and Later conversIon of relevant Fractions from wastEwater
Data source
© European Union, 2026. Source: CORDIS. Reused under Commission Decision 2011/833/EU — CC BY 4.0.
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