
NOVARECKON SRL
NOVARECKON SRL
2 Projects, page 1 of 1
Open Access Mandate for Publications assignment_turned_in Project2017 - 2020Partners:Exide Technologies (Germany), APPA, ICCS, UAB RENERGA, KOSTAL SOLAR ELECTRIC IBERICA S.L. +18 partnersExide Technologies (Germany),APPA,ICCS,UAB RENERGA,KOSTAL SOLAR ELECTRIC IBERICA S.L.,FHG,NOVARECKON SRL,IEN,LEI,ΔΕΔΔΗΕ Α.Ε.,DELOITTE ADVISORY,KOSTAL SOLAR ELECTRIC IBERICA S.L.,NOVARECKON SRL,ENEA OPERATOR SP ZOO,ΔΕΔΔΗΕ Α.Ε.,APPA,LEI,IEn,UAB RENERGA,ICCS,ENEA OPERATOR SP ZOO,DELOITTE ADVISORY,Exide Technologies (Germany)Funder: European Commission Project Code: 764452Overall Budget: 2,706,940 EURFunder Contribution: 2,706,940 EURiDistributedPV´s aim is developing affordable integrated solutions to enhance the penetration of distributed solar PV (buildings) based on the effective integration of solar PV equipment, energy storage, monitoring and controlling strategies and procedures, active demand management, smart technologies and the integration of procedures in the power distribution system according to market criteria. The project will develop the concept of “prosumer”: a player that consumes and produces electricity in his facilities (solar PV). iDistributedPV will be the EU common place for enhancing the distributed solar PV: promoters, equipment manufacturers, DSOs, energy policy experts and R&D players will work together to develop affordable solutions, and produce business and management models for these solutions. The most promising solutions will be validated according to technical and economic criteria (for every solution a cost-benefit analysis will be elaborated) in five different European real distribution grids (Greece, Lithuania, Spain, Poland and Germany) considering different climatic, regulatory and technical frameworks. The validation process will be a relevant argument to convince the power stakeholders (DSOs, equipment manufacturers, energy authorities, policy makers, etc.) about the suitability of the most effective distributed solar PV solutions such as smart electricity supply. iDistributedPV will provide technical and regulatory recommendations, mainly focused on enhancing an effective and active renewable energy contribution and effective demand management to the security and reliability of the electricity networks: evolution from a power system with a centralized electricity generation to a new one that also includes production/demand units (prosumers) based on renewable energy and smart technologies.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2017 - 2020Partners:James Hutton Institute, STOCKBRIDGE TECHNOLOGY CENTRE, INRAE, UNITO, James Hutton Institute +36 partnersJames Hutton Institute,STOCKBRIDGE TECHNOLOGY CENTRE,INRAE,UNITO,James Hutton Institute,CASELLA MACCHINE AGRICOLE SRL,TAMBURRINO RAFFAELE,GAIA EPICHEIREIN AE,CASELLA MACCHINE AGRICOLE SRL,EPSO,EPSO,STRIGOLAB SRL,UIB,NEURATHER GARTNER GBR,TAMBURRINO RAFFAELE,GAIA EPICHEIREIN AE,CONFAGRICOLTURA,NOVARECKON SRL,University of Bonn,UNIMI,AUA,JSI,EDYPRO FERTILIZANTES SL,University of Nottingham,CONFAGRICOLTURA,HUJI,Technion – Israel Institute of Technology,GAUTIER SEMENCES,INSTITUTUL DE CERCETARE-DEZVOLTAREPT INDUSTRIALIZAREA SI MARKETINGULPRODUSELOR HORTICOLE HORTING,STOCKBRIDGE TECHNOLOGY CENTRE,INSTITUTUL DE CERCETARE-DEZVOLTAREPT INDUSTRIALIZAREA SI MARKETINGULPRODUSELOR HORTICOLE HORTING,AGROILLA SAT,NOVARECKON SRL,NEURATHER GARTNER GBR,EDYPRO FERTILIZANTES SL,AUA,STRIGOLAB SRL,AGROILLA SAT,University Federico II of Naples,JSI,GAUTIER SEMENCESFunder: European Commission Project Code: 727929Overall Budget: 5,996,180 EURFunder Contribution: 5,996,180 EURTomato is a main EU agricultural commodity, cultivated all over Europe in open and protected field and in glasshouses, representing a biological and agronomical model crop. Combined water and nutrient stress is a major problem for tomato farmers and solutions are needed to safeguard yields, while preserving the environment. TOMRES will select, among over 10,000 available accessions, rootstocks and scions tolerating combined stress, while retaining fruit quality and yield, taking advantage of innovative screening approaches. Novel traits, in particular belowground, to be exploited in breeding, will be identified. The role of selected hormones (strigolactones and brassinosteroids) will be studied to identify further resilience traits. TOMRES will test and optimize sustainable crop management strategies such as legume intercropping, precision fertilization and irrigation techniques, manipulation of symbiotic microorganisms, and the use of rootstocks more suited to water and nutrient uptake from the soil. Novel genotypes X management strategies will be developed with the goal of reducing N and P application by at least 20%, water input by 40%, while granting environmental sustainability and economic viability of the solutions proposed. Testing will be integrated with analysis of environmental (greenhouse emissions, water quality), and of socio-economic impact. Agronomical, environmental, and economical data will be processed to construction of models and of a Decision Support System. Demonstration and dissemination activities will follow the whole course of the project, and will transfer the results to different environments and other cropping systems, thus ensuring the widest impact of the gained knowledge on the EU economy. Trans-disciplinary knowledge transfer among farmers, breeders, industries, associations and scientists will be granted by a solid multi-actor approach since the planning stage.
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