
European Association for the Promotion of Cogeneration
European Association for the Promotion of Cogeneration
3 Projects, page 1 of 1
Open Access Mandate for Publications and Research data assignment_turned_in Project2022 - 2026Partners:MITIS, University of Mons, OWI Oel-Waerme Institut GmbH, B.T.G. BIOMASS TECHNOLOGY GROUP BV, European Association for the Promotion of Cogeneration +9 partnersMITIS,University of Mons,OWI Oel-Waerme Institut GmbH,B.T.G. BIOMASS TECHNOLOGY GROUP BV,European Association for the Promotion of Cogeneration,OWI Oel-Waerme Institut GmbH,ETA,AAU,Fahrenheit (Germany),B.T.G. BIOMASS TECHNOLOGY GROUP BV,European Association for the Promotion of Cogeneration,ETA,FHG,Fahrenheit (Germany)Funder: European Commission Project Code: 101083536Overall Budget: 4,993,390 EURFunder Contribution: 4,993,390 EURFit4Micro aims to develop a hybrid microCHP unit running on sustainable liquid biofuels. Application is foreseen at multi-family houses, and more specifically at remote and/or off-grid locations. The innovative system is based on a double shaft micro gas turbine (mGT) combined with a novel humidification unit. This unique combination leads to very high electrical efficiencies (>40%) as well as a very flexible heat:power ratio. Low emissions are achieved by the application of flameless combustion, and a high GHG emission reduction is obtained by using truly advanced, RED2 compliant biofuel. Use of a mGT as core-unit in Fit4Micro is ideal for domestic usage, as the system has very low noise output and is vibration free. Furthermore, rapid response times and fuel-flexible operation make this the ideal base for a highly efficient hybrid CHP system, resilient to changes in (local) fuel and power markets, empowering the consumers through digital solutions. Furthermore, the Fit4Micro unit will be integrated with a compression heat pump, an innovative adsorption and a solar PV system through the DC power system avoiding transmission losses. A smart control system will be developed to enable optimal performance at all times. Efficient fuel distribution and off-grid operation of Fit4Micro is enabled by using sustainable liquid biofuels. These fuels will be produced from biomass residues and organic waste streams, through fast pyrolysis followed by mild hydro-processing yielding a hydrotreated pyrolysis oil (HPO). In Fit4Micro the objective is to widen the feedstock basis and lower the fuel costs by i) using residues as the primary feedstock, and ii) by limiting hydrogen consumption by application of mild processing conditions. Besides technological development work, the Fit4Micro project includes specific activities on socio-economic and environmental sustainability, public perception, gender dimensions, market aspects, the regulatory framework & policies.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications assignment_turned_in Project2016 - 2021Partners:BDR Thermea Group B.V., SENERTEC KRAFT-WARME ENERGIESYSTEME GMBH, EE FR, DTU, Sunfire (Germany) +25 partnersBDR Thermea Group B.V.,SENERTEC KRAFT-WARME ENERGIESYSTEME GMBH,EE FR,DTU,Sunfire (Germany),BTT,VIESSMANN CLIMATE SOLUTIONS GMBH & CO. KG,HEXIS AG,EWE AG,VAILLANT GMBH,Element Energy,BTT,European Association for the Promotion of Cogeneration,ERM FRANCE,Element Energy,VIESSMANN WERKE,HEXIS AG,VIESSMANN CLIMATE SOLUTIONS GMBH & CO. KG,BDR Thermea Group B.V.,European Association for the Promotion of Cogeneration,VIESSMANN WERKE,ERM FRANCE,EE FR,VAILLANT GMBH,EWE AG,HSLU,SOLIDPOWER SPA,Sunfire (Germany),SENERTEC KRAFT-WARME ENERGIESYSTEME GMBH,LUCERNE UNIVERSITY OF APPLIED SCIENCES AND ARTSFunder: European Commission Project Code: 700339Overall Budget: 84,462,096 EURFunder Contribution: 33,932,800 EURPACE is a major initiative aimed at ensuring the European mCHP sector makes the next move to mass market commercialisation. The project will deploy a total of 2,650 new fuel cell microCHP units with real customers and monitor them for an extended period. This will: - Enable fuel cell mCHP manufacturers to scale up production, using new series techniques, and increased automation. By 2018, four leading European manufacturers (Bosch, SOLIDpower, Vaillant and Viessmann) will have installed capacity for production of over 1,000 units/year (each will install over 500 units in PACE). These production lines will test the manufacturing techniques which will allow for mass market scale up and the reductions in unit cost which will come from associated economies of scale. - Allow the deployment of new innovations in fuel cell microCHP products, which reduce unit cost by over 30%, increase stack lifetime to over 10 years (by end of the project) and improve the electrical efficiency of all units. - Create a large dataset of the performance of the units, which will demonstrate the readiness of fuel cell mCHP as a mass market product. This will prove that fuel cell mCHP can be a leading contributor to reducing primary energy consumption and GHG emissions across Europe. - Allow the units in the trial to be pooled in a large scale test of the concept of aggregating and controlling the output from mCHP to act as a virtual power plant. This will be achieved in a project run by EWE on a section of the German grid earmarked for smart grid trials. - Act as the basis for an effort to standardise mCHP products in Europe, helping create a more efficient market for both installers and component suppliers. The project will provide an evidence base which will be used in a dissemination campaign targeting policy makers (who can provide supportive policies for the next wave of mCHP roll-out) and increasing awareness of the technology within the domestic heating sector (main route to market).
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2012 - 2017Partners:SENERTEC KRAFT-WARME ENERGIESYSTEME GMBH, DTU, DBI - GTI, GASWARME-INSTITUT ESSEN EV, RIESAER BRENNSTOFFZELLENTECHNIK GMBH GESELLSCHAFT FUR ENTWICKLUNG UNDANWENDUNG INNOVATIVER ENERGIESYSTEME +50 partnersSENERTEC KRAFT-WARME ENERGIESYSTEME GMBH,DTU,DBI - GTI,GASWARME-INSTITUT ESSEN EV,RIESAER BRENNSTOFFZELLENTECHNIK GMBH GESELLSCHAFT FUR ENTWICKLUNG UNDANWENDUNG INNOVATIVER ENERGIESYSTEME,Imperial,BTT,EIFER,HYER,Ballard Europe,RIESAER BRENNSTOFFZELLENTECHNIK GMBH GESELLSCHAFT FUR ENTWICKLUNG UNDANWENDUNG INNOVATIVER ENERGIESYSTEME,GASWARME-INSTITUT ESSEN EV,ID,Element Energy,VIESSMANN WERKE,European Association for the Promotion of Cogeneration,BGNE,POLITO,CERES POWER LIMITED,Element Energy,EIFER,HEXIS AG,VAILLANT GMBH,BTT,BAXI INNOTECH GMBH,SOLIDPOWER SPA,DE,BAXI INNOTECH GMBH,ENGIE,ELCORE GMBH,VIESSMANN WERKE,HEXIS AG,DANTHERM POWER A.S,ENGIE,DONG OIL&G,DE WIND POWER HOLDING,DE WIND PO,HYER,RCVT,BGNE,ENVIPARK,European Association for the Promotion of Cogeneration,SENERTEC KRAFT-WARME ENERGIESYSTEME GMBH,ID,RCVT,DE,EST,ENVIPARK,DBI - GTI,VAILLANT GMBH,SOLIDPOWER SPA,EST,DONG OIL&G,CERES POWER LIMITED,ELCORE GMBHFunder: European Commission Project Code: 303462All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=corda_______::5aa3e919f87506cebd798980d366908b&type=result"></script>'); --> </script>
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