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BELENUS SIGNED

Lowering Costs by Improving Efficiencies in Biomass Fueled Boilers: New Materials and Coatings to Reduce Corrosion

Total Cost €

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EC-Contrib. €

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Partnership

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 BELENUS project word cloud

Explore the words cloud of the BELENUS project. It provides you a very rough idea of what is the project "BELENUS" about.

synergy    hours    steel    base    material    protocol    primary    designer    utilities    designed    plants    tube    bioenergy    belenus    fuel    online    economic    mitigating    optimum    types    direct    42    transfer    conversion    components    60    temperature    life    respectively    innovative    holistic    cycle    tubes    flexibility    prevent    lca    prediction    corrosion    coatings    tools    commercial    chosen    lower    strategies    resistance    multidisciplinary    reducing    monitoring    efficiency    creep    coated    trl    trl5    chp    time    lifetime       brings    perspectives    solution    undertaken    superheater    expenditure    engineering    sustainability    plant    specialized    comprising    validated    electric    surface    sh    maximising    boiler    durability    bending    resistant    limiting    breakthroughs    preventing    welding    environmental    technological    quality    biomass    materials    developers    capex    lcoe    opex    performance    optimising    power    stakeholders   

Project "BELENUS" data sheet

The following table provides information about the project.

Coordinator
UNIVERSIDAD COMPLUTENSE DE MADRID 

Organization address
address: AVENIDA DE SENECA 2
city: MADRID
postcode: 28040
website: http://www.ucm.es

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country Spain [ES]
 Total cost 4˙991˙323 €
 EC max contribution 4˙991˙323 € (100%)
 Programme 1. H2020-EU.3.3.2. (Low-cost, low-carbon energy supply)
 Code Call H2020-LC-SC3-2018-RES-TwoStages
 Funding Scheme RIA
 Starting year 2019
 Duration (year-month-day) from 2019-03-01   to  2023-02-28

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    UNIVERSIDAD COMPLUTENSE DE MADRID ES (MADRID) coordinator 780˙450.00
2    CHALMERS TEKNISKA HOEGSKOLA AB SE (GOETEBORG) participant 600˙450.00
3    INSTITUTO NACIONAL DE TECNICA AEROESPACIAL ESTEBAN TERRADAS ES (TORREJON DE ARDOZ MADRID) participant 569˙395.00
4    TECHNISCHE UNIVERSITAET MUENCHEN DE (MUENCHEN) participant 545˙179.00
5    DOOSAN BABCOCK LIMITED UK (CRAWLEY) participant 429˙450.00
6    CENTRO DE INVESTIGACIONES ENERGETICAS, MEDIOAMBIENTALES Y TECNOLOGICAS-CIEMAT ES (MADRID) participant 400˙508.00
7    Teknologian tutkimuskeskus VTT Oy FI (Espoo) participant 308˙686.00
8    UNIPER TECHNOLOGIES LIMITED UK (BIRMINGHAM) participant 294˙976.00
9    EIFER EUROPAISCHES INSTITUT FUR ENERGIEFORSCHUNG EDF KIT EWIV DE (KARLSRUHE) participant 243˙340.00
10    AKTIEBOLAGET SANDVIK MATERIALSTECHONOLOGY SE (SANDVIKEN) participant 203˙500.00
11    VALLOUREC TUBES FRANCE FR (BOULOGNE-BILLANCOURT) participant 193˙750.00
12    ZABALA INNOVATION CONSULTING, S.A. ES (MUTILVA ALTA NAVARRA) participant 185˙000.00
13    TECNOLOGIA ENGENHARIA E MATERIAIS SA PT (TAVEIRO COIMBRA) participant 120˙250.00
14    RWE POWER AG DE (ESSEN) participant 114˙263.00
15    TECHNISCHE UNIVERSITAET CHEMNITZ DE (CHEMNITZ) participant 2˙124.00

Map

 Project objective

The primary objective of BELENUS is to lower bioenergy CAPEX and OPEX by an average of 5 and 60% respectively. This will be addressed by preventing or mitigating corrosion as the main limiting factor through a holistic approach to prevent corrosion in the boiler, in particular in superheater (SH) tubes: a) new surface engineering: biomass corrosion highly resistant coatings on creep resistance materials; b) new strategies of welding and bending for coated tubes improving the quality and efficiency of boiler components; and c) new online corrosion monitoring system specifically designed for biomass CHP plants. In addition, the BELENUS solution will impact on other LCOE parameters by improving efficiency in the conversion (up to 42%), increasing a 5% the operational hours of the plant and plant life time (5 years) and reducing the fuel expenditure of the plant by optimising its use and providing flexibility by allowing the use of different types of biomass. Improved performance for high temperature material systems through the technological breakthroughs, will be evaluated and validated an innovative test protocol. Finally, modelling and lifetime prediction tools will be developed and cost analysis and Life Cycle Analysis (LCA) undertaken so the optimum materials and coatings are chosen from the durability, economic and environmental perspectives, maximising the sustainability in economic and environmental terms. BELENUS brings together a multidisciplinary consortium comprising the main stakeholders with leading utilities, steel and tube developers, boiler designer and specialized research institutions from across Europe. This synergy allows a direct transfer of results in TRL5 to be obtained in BELENUS as technical base to go further to higher TRL into commercial biomass electric power plants within less than 5 years.

 Deliverables

List of deliverables.
Biomass fuels characterisation Documents, reports 2020-01-23 12:52:02
Collation of data sources: coatings performance Documents, reports 2020-01-23 12:52:02
Review of resource data for selected biomass Documents, reports 2020-01-23 12:52:01
Plan for the Exploitation and Dissemination of Results (PEDR) Documents, reports 2020-01-23 12:52:01
Project website Websites, patent fillings, videos etc. 2020-01-23 12:52:01
Collation of data sources: welding and bending Documents, reports 2020-01-14 14:59:46

Take a look to the deliverables list in detail:  detailed list of BELENUS deliverables.

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