
RINA SERVICES SPA
RINA SERVICES SPA
31 Projects, page 1 of 7
Open Access Mandate for Publications and Research data assignment_turned_in Project2015 - 2020Partners:TECNALIA, SÍMBIOSY, BRITISH GLASS MANUFACTURERS CON, BEFESA SALZCHALACKE, OVAM +46 partnersTECNALIA,SÍMBIOSY,BRITISH GLASS MANUFACTURERS CON,BEFESA SALZCHALACKE,OVAM,EKODENGE,TECNALIA,GTS,CENTRO SVILUPPO MATERIALI SPA,Fundación Agustín de Betancourt,HIFAB AB,ACCIONA CONSTRUCCION SA,AENOR,HIFAB AB,FERALPI SIDERURGICA SPA,RINA-C,BRITISH GLASS MANUFACTURERS CON,Geonardo (Hungary),CENTRO SVILUPPO MATERIALI SPA,OVAM,AENOR,CSIC,Keraben Grupo (Spain),Ecodek,GTS,ACR+,FERALPI SIDERURGICA SPA,TRI,FENIX TNT SRO,RISE,TRI,AKG GAZBETON ISLETMELERI SANAYI VETICARETCARET AS,FENIX TNT SRO,Fundación Agustín de Betancourt,SÍMBIOSY,Keraben Grupo (Spain),TCMA,EKODENGE,RINA SERVICES SPA,Geonardo (Hungary),Vannplastic Ltd,BEFESA SALZCHALACKE,Ecodek,AKG GAZBETON ISLETMELERI SANAYI VETICARETCARET AS,Vannplastic Ltd,RINA SERVICES SPA,ACCIONA CONSTRUCCION SA,TCMA,RINA-C,ACR+,CBI Betonginstitutet ABFunder: European Commission Project Code: 642154Overall Budget: 11,214,600 EURFunder Contribution: 8,892,410 EURThe 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 software platform will be developed in order to implement the innovative industrial symbiosis model in a feasible scenario of industrial symbiosis synergies between industries (steel, aluminium, natural stone, chemical and demolition and construction sectors) and stakeholders in the extended construction value chain. It will guide how to overcome technical barriers and non technical barriers, as well as standardisation concerns to implement and replicate industrial symbiosis in a local/regional dimension. The ambition of the model will be to be replicated in other regions and other value chains symbiosis scenarios. The model will be applied based on the three sustainability pillars. FISSAC will demonstrate the applicability of the model as well as the effectiveness of the innovative processes, services and products at different levels: - Manufacturing processes: with demonstration of closed loop recycling processes to transform waste into valuable secondary raw materials, and manufacturing processes of the novel products at industrial scale - Product validation: with demonstration of the eco-design of eco-innovative construction products (new Eco-Cement and Green Concrete, innovative ceramic tiles and Rubber Wood Plastic Composites) in pre-industrial processes under a life cycle approach, and demonstration at real scale in different case studies of the application and the technical performance of the products - FISSAC model, with the demonstration of the software platform and replicability assessment of the model through living lab concept
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2013 - 2016Partners:TU Berlin, SINTEF AS, University of Duisburg-Essen, NAP, CEHIPAR +32 partnersTU Berlin,SINTEF AS,University of Duisburg-Essen,NAP,CEHIPAR,GERMANISCHER LLOYD SE,CalMac,MRTK,DNV,ULJ,FOINIKAS,NTUA,DTU,INTA,NAP,NTUA,EVFH,FSG,CEHIPAR,CalMac,LR IMEA,ISESP,ULJ,RINA SERVICES SPA,DANAOS SHIPPING COMPANY LIMITED,GERMANISCHER LLOYD SE,DNV,EVFH,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,RINA SERVICES SPA,FSG,TU Delft,FOINIKAS,University of Strathclyde,DANAOS SHIPPING COMPANY LIMITED,LR IMEA,TEKNOLOGIAN TUTKIMUSKESKUS VTT OYFunder: European Commission Project Code: 605221All 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_______::5dfe3c5599486a112146ef238aea5987&type=result"></script>'); --> </script>
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2023 - 2025Partners:Irish Continental Group plc, NTUA, GRIMALDI DEEP SEA SPA, Oracle Marine, FRIENDSHIP SYSTEMS AG +20 partnersIrish Continental Group plc,NTUA,GRIMALDI DEEP SEA SPA,Oracle Marine,FRIENDSHIP SYSTEMS AG,Atlantec Enterprise Solutions (Germany),ASTANDER,SIMFWD P.C.,Atlantec Enterprise Solutions (Germany),bound4blue,RINA SERVICES SPA,FRIENDSHIP SYSTEMS AG,RINA SERVICES SPA,LASKARIDIS SHIPPING COMPANY LTD.,LASKARIDIS SHIPPING COMPANY LTD.,AALTO,SIMFWD P.C.,ADVANCED WING SYSTEMS LIMITED,ASTANDER,Oracle Marine,EUROMED,CNR,Irish Continental Group plc,ADVANCED WING SYSTEMS LIMITED,bound4blueFunder: European Commission Project Code: 101096068Overall Budget: 5,650,300 EURFunder Contribution: 4,109,030 EURThe proposal develops a combination of energy-saving solutions that can be adopted in retrofitting aimed at achieving the 35% of GHG emissions. Two new technologies, i.e. wind assisted ship propulsion and an innovative air lubrication system, will be developed together with other solutions that, although based on already mature technologies, such as operational and hydrodynamic design optimization and ship electrification, have to be expanded to be integrated with the new solutions as well as to cope with the constraints posed by the original ship design. The final objective of RETROFIT55 is to create an advanced web-based Decision Support System (DSS), that fuses together digital twins of the different systems into an integrated digital ship model. The DSS will feature a catalogue of retrofitting solutions that are up-to-date and ready to be deployed at the end of the project and easily extendable afterward while developed and demonstrated at TRL 7-8, suitable for different ship types and operational contexts. The DSS will enable the user to configure the retrofitting by combining different options which are suitable for the specific ship type and comparing them in terms of life-cycle cost, return-of-investment and several KPIs, such as EEXI, CII. Referring to the ZEWT strategy, while primarily contributing to the Design and Retrofit, the implementation of the project will also intersect other topics, such as Use of Sustainable Alternative fuels, Energy Efficiency, Electrification and Digital Green. The consortium brings together universities and research institutions, three developers of the new technologies, a ship design office, software developers, ICT experts, a classification society, a ship-repair company, and two large ship operators.
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2009 - 2012Partners:RINA SERVICES SPA, LR IMEA, MTG - DOLPHIN PLC, NEORION, Glafcos Marine Ltd. +11 partnersRINA SERVICES SPA,LR IMEA,MTG - DOLPHIN PLC,NEORION,Glafcos Marine Ltd.,UIB,Rigel Engineering S.r.l.,LR IMEA,Glafcos Marine Ltd.,DFKI,HORAMA,NEORION,Rigel Engineering S.r.l.,CNR,HORAMA,RINA SERVICES SPAFunder: European Commission Project Code: 233715All 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_______::16f1fd7274b97083b2edd116853d53cb&type=result"></script>'); --> </script>
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2015 - 2019Partners:EMBUILD, RTT STEINERT GMBH, ADR TECHNOLOGY, TIIHONEN ISMO, IHOBE +44 partnersEMBUILD,RTT STEINERT GMBH,ADR TECHNOLOGY,TIIHONEN ISMO,IHOBE,Leiden University,STRUKTON CIVIEL BV,TIIHONEN ISMO,KNAUF GMBH,VITO,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,SELFRAG,TU Delft,Conenor,STRUKTON CIVIEL BV,Inashco,Lafarge Centre de Recherche SAS,Inashco,ACCIONA CONSTRUCCION SA,TECNALIA,KS LAATUENERGIA OY,MEBIN BV,RINA-C,TECNALIA,MEBIN BV,GAIKER,DB,RINA-C,ASM Centre for Research and Analysis Market (Poland),IHOBE,DB,Vlaamse Instelling voor Technologisch Onderzoek (VITO),RTT STEINERT GMBH,Active3D,NATIONALE CONFEDERATIE VAN HET BOUWBEDRIJF VZW,GAIKER,RINA SERVICES SPA,BRGM,KS LAATUENERGIA OY,ADR TECHNOLOGY,RINA SERVICES SPA,Conenor,ACCIONA CONSTRUCCION SA,BRGM,Active3D,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,KNAUF GMBH,HIC,SELFRAGFunder: European Commission Project Code: 642085Overall Budget: 7,665,260 EURFunder Contribution: 7,511,870 EUREU28 currently generates 461 million tons per year of ever more complex construction and demolition waste (C&DW) with average recycling rates of around 46%. There is still a significant loss of potential valuable minerals, metals and organic materials all over Europe. The main goal of HISER project is to develop and demonstrate novel cost-effective technological and non-technological holistic solutions for a higher recovery of raw materials from ever more complex C&DW, by considering circular economy approaches throughout the building value chain (from the End-of-Life Buildings to new Buildings). The following solutions are proposed: - Harmonized procedures complemented with an intelligent tool and a supply chain tracking system, for highly-efficient sorting at source in demolition and refurbishment works. - Advanced sorting and recycling technologies for the production and automated quality assessment of high-purity raw materials from complex C&DW. - Development of optimized building products (low embodied energy cements, green concretes, bricks, plasterboards and gypsum plasters, extruded composites) through the partial replacement of virgin raw materials by higher amounts of secondary high-purity raw materials recovered from complex C&DW. These solutions will be demonstrated in demolition projects and 5 case studies across Europe. Moreover, the economic and environmental impact of the HISER solutions will be quantified, from a life cycle perspective (LCA/LCC), and policy and standards recommendations encouraging the implementation of the best solutions will be drafted. HISER will contribute to higher levels of recovered materials from C&DW from 212 Mt in 2014, to 359 Mt in 2020 and 491 Mt by ca. 2030, on the basis of the increase in the recovery of aggregates, from 40% (169 Mt) to more than 80% (394 t) and wood, from 31% (2.4 Mt) to 55% (5 Mt);. Similarly, unlocking valuable raw materials currently not exploited is foreseen, namely some metals and emerging flows.
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