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TO-SYN-FUEL SIGNED

The Demonstration of Waste Biomass to Synthetic Fuels and Green Hydrogen

Total Cost €

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EC-Contrib. €

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Partnership

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 TO-SYN-FUEL project word cloud

Explore the words cloud of the TO-SYN-FUEL project. It provides you a very rough idea of what is the project "TO-SYN-FUEL" about.

bought    demonstration    swing    tcr    sufficient    fuels    energy    undoubtedly    conversion    ambition    equivalent    32    biomass    lce    catalytic    standards    wastes    providers    separation    hdo    transport    35    environmental    commercial    of    en590    psa    thermo    overarching    210    plants    sewage    savings    facility    investment    waste    en228    economic    kg    ghg    committed    installed    organic    rest    hydrogen    renewable    litres    first    mark    2100    building    deployment    showcase    biofuels    syn    diversion    sustainable    19    framework    green    fuel    substitute    adsorption    designed    gasoline    convert    compliant    transportation    pressure    effort    reforming    combined    sludge    combining    grade    deoxygenation    landfill    benchmark    experts    industrial    dried    copy    implements    responding    innovation    platform    social    diesel    million    anywhere    subsequent    world    successfully    liquid    hydro   

Project "TO-SYN-FUEL" data sheet

The following table provides information about the project.

Coordinator
FRAUNHOFER GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V. 

Organization address
address: HANSASTRASSE 27C
city: MUNCHEN
postcode: 80686
website: www.fraunhofer.de

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 Germany [DE]
 Project website http://www.tosynfuel.eu
 Total cost 14˙511˙922 €
 EC max contribution 12˙250˙528 € (84%)
 Programme 1. H2020-EU.3.3.3. (Alternative fuels and mobile energy sources)
 Code Call H2020-LCE-2016-RES-IA
 Funding Scheme IA
 Starting year 2017
 Duration (year-month-day) from 2017-05-01   to  2021-04-30

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    FRAUNHOFER GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V. DE (MUNCHEN) coordinator 5˙334˙250.00
2    VERFAHRENSTECHNIK SCHWEDT GMBH (VTS-GMBH) DE (SCHWEDT ODER) participant 1˙929˙550.00
3    ENGIE SERVICES NEDERLAND NV NL (BUNNIK) participant 1˙022˙875.00
4    SUSTEEN TECHNOLOGIES GMBH DE (SULZBACH ROSENBERG) participant 874˙475.00
5    THE UNIVERSITY OF BIRMINGHAM UK (BIRMINGHAM) participant 789˙003.00
6    HYGEAR TECHNOLOGY AND SERVICES BV NL (Arnhem) participant 510˙273.00
7    ALMA MATER STUDIORUM - UNIVERSITA DI BOLOGNA IT (BOLOGNA) participant 464˙375.00
8    WRG EUROPE LTD UK (EXETER DEVON) participant 398˙833.00
9    ENI SPA IT (ROMA) participant 321˙125.00
10    ETA - ENERGIA, TRASPORTI, AGRICOLTURA SRL IT (FIRENZE) participant 219˙454.00
11    ACONDICIONAMIENTO TARRASENSE ASSOCIACION ES (TERRASSA) participant 202˙562.00
12    SLIBVERWERKING NOORD-BRABANT NV NL (Moerdijk) participant 183˙750.00

Map

 Project objective

TO-SYN-FUEL will demonstrate the conversion of organic waste biomass (Sewage Sludge) into biofuels. The project implements a new integrated process combining Thermo-Catalytic Reforming (TCR©), with hydrogen separation through pressure swing adsorption (PSA), and hydro deoxygenation (HDO), to produce a fully equivalent gasoline and diesel substitute (compliant with EN228 and EN590 European Standards) and green hydrogen for use in transport . The TO-SYN-FUEL project consortium has undoubtedly bought together the leading researchers, industrial technology providers and renewable energy experts from across Europe, in a combined, committed and dedicated research effort to deliver the overarching ambition. Building and extending from previous framework funding this project is designed to set the benchmark for future sustainable development and growth within Europe and will provide a real example to the rest of the world of how sustainable energy, economic, social and environmental needs can successfully be addressed. This project will be the platform for deployment of a subsequent commercial scale facility. This will be the first of its kind to be built anywhere in the world, processing organic industrial wastes directly into transportation grade biofuels fuels which will be a demonstration showcase for future sustainable investment and economic growth across Europe. This project will mark the first pre-commercial scale deployment of the technology processing up to 2100 tonnes per year of dried sewage sludge into 210,000 litres per year of liquid biofuels and up to 30,000 kg of green hydrogen. The scale up of 100 of such plants installed throughout Europe would be sufficient to convert up to 32 million tonnes per year of organic wastes into sustainable biofuels, contributing towards 35 million tonnes of GHG savings and diversion of organic wastes from landfill. This proposal is responding to the European Innovation Call LCE-19.

 Deliverables

List of deliverables.
Feedstock composition and system mass/energy balance Documents, reports 2019-05-30 15:19:55
Branding materials Other 2019-05-30 15:19:54
Map and quantification of all inputs and outputs for TCR 300 and integrated TCR/PSA/HDO plant Documents, reports 2019-05-15 18:19:08
State of the art LCA model for TCR application selected Documents, reports 2019-05-15 18:19:08
Definition of scope of sustainability metrics Documents, reports 2019-05-15 18:19:08
Catalogue of regulatory issues Documents, reports 2019-05-15 18:19:08
Website and social media feeds online Websites, patent fillings, videos etc. 2019-05-30 15:32:26

Take a look to the deliverables list in detail:  detailed list of TO-SYN-FUEL deliverables.

 Publications

year authors and title journal last update
List of publications.
2018 Robert Daschner, Thorsten Hornung, Miloud Ouadi, Christopher Tuck, Stefano Capaccioli
TO-SYN-FUEL, The Demonstration of Waste Biomass to Synthetic Fuels and Green Hydrogen, European Commission Horizon2020 programme
published pages: 73-75, ISSN: 2398-7073, DOI: 10.21820/23987073.2018.6.73
Impact 2018/6 2019-05-15

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