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BIOfuels production from Syngas FERmentation for Aviation and maritime use

CORDIS proporciona enlaces a los documentos públicos y las publicaciones de los proyectos de los programas marco HORIZONTE.

Los enlaces a los documentos y las publicaciones de los proyectos del Séptimo Programa Marco, así como los enlaces a algunos tipos de resultados específicos, como conjuntos de datos y «software», se obtienen dinámicamente de OpenAIRE .

Resultado final

Metabolic engineering of oleaginous yeasts for efficient acetate fermentation and production of medium and long chain TAGs (se abrirá en una nueva ventana)

Selection of the best yeast strains taking into account the lipid content and lipid profile produced, and the fermentation strategy(low or high acetate concentration)Related Tasks: T3.2 (T3.2.2)

Results of full-chain process simulations (se abrirá en una nueva ventana)

Full-chain process model of the BioSFerA process. Determination of the desing and operational aspects of the BiosFerA process at industrial scale.Related Tasks: T6.2

BioSFerA Replication Pre-Feasibility Studies in at least 3 EU countries (se abrirá en una nueva ventana)

Replication feasibility studies for different regions around Europe: in Italy (RINA-C), in Greece (CERTH), Spain-South West (CARTIF), Finland-North (VTT), Netherlands-Central Europe (SEANRG BV)Related Tasks: T7.1

Identification of optimal operating window for TAG upgrading (se abrirá en una nueva ventana)

Definition of the optimal operating range regarding the reaction temperature, system pressure, H2/bio-oil ratio, and Liquid Hourly Space Velocity (LHSV)Related Tasks: T5.3

Dynamic simulation and control of the BioSFerA process (se abrirá en una nueva ventana)

Dynamic simulations and plantwide control system development aiming to regulate the produced syngas composition according to the selected strains specifications and the by-products minimization.Related Tasks: T6.4

Optimization of syngas fermentation process parameters for acetate production (1st stage) (se abrirá en una nueva ventana)

Experiments will be carried out in order to identify the best acetogenic bacteria in terms of productivity, yield and titer of acetate, which will be used to feed the subsequent fermentation process.Related Tasks: T3.3

Report on communication and dissemination activities 4 (se abrirá en una nueva ventana)

Report on communication and dissemination activities [M12, M18, M24, M30, M36, M42]Related Tasks: T8.2

Pre-selection catalyst and set-up for 16-batch reactor (se abrirá en una nueva ventana)

Purified TAGs analysis and screening on potential contaminants for hydrotreatment. Related Tasks: T5.1, T5.2

Results of the pilot run (se abrirá en una nueva ventana)

Fermentation start-up at 10L scale: validate coupling of both systems using the pure gas - Fermentation run at 100L scale (reaching TRL 5)Related Tasks: T4.3

Report on communication and dissemination activities 5 (se abrirá en una nueva ventana)

Report on communication and dissemination activities [M12, M18, M24, M30, M36, M42]Related Tasks: T8.2

Optimization of acetate fermentation process parameters for C14 and C16-18 TAGs production (2nd stage) (se abrirá en una nueva ventana)

Validation of performance of the best metabolically engineered oleaginous yeast strains in bench scale bioreactors. Optimization of C14 and C16-C18 TAGs volumetric productivity.Related Tasks: T3.4

Report on communication and dissemination activities 1 (se abrirá en una nueva ventana)

Report on communication and dissemination activities [M12, M18, M24, M30, M36, M42] Related Tasks: T8.2

Report on communication and dissemination activities 2 (se abrirá en una nueva ventana)

Report on communication and dissemination activities [M12, M18, M24, M30, M36, M42]Related Tasks: T8.2

Report on selected evaluation indicators (se abrirá en una nueva ventana)

The identification of a targeted set of key performance indicators that will be served for the evaluation of the proposed concept. Related Tasks: T2.2

Lab scale downstream processing for TAGs recovery and purification using conventional and novel strategies (se abrirá en una nueva ventana)

Lipids separation pre-treatments potentials and pathways, by applying the technologies currently available(steam explosion, centrifugation and membrane separation) and considering different process parameters and extraction procedures.Related Tasks: T3.5

Process layout and cost engineering of the BioSFerA biorefinery plant (se abrirá en una nueva ventana)

Based on the results of pilot scale tests, results from the gasification model and the validated full chain process model, the required components will be defined and design rules for component sizing will be produced.Related Tasks: T6.3

Report on DFB Gasification modelling (se abrirá en una nueva ventana)

A custom-made Enery Minimization Multi-Scale Model (EMMS) for the specific operational conditions of the DFB unit will be developed.Related Tasks: T6.1

Metabolic engineering of acetogenic bacteria for efficient syngas fermentation and production of acetate (se abrirá en una nueva ventana)

Selection of the best acetate producer strain based on the syngas composition, and especially in the presence of possible inhibitors.Related Tasks: T3.2 (T3.2.1)

Full process basic definition (se abrirá en una nueva ventana)

Process simulations to solve heat and mass balances for the overall process acting as a benchmark for the following lab and pilot activities. Related Tasks: T2.5

Final report on communication and dissemination activities (se abrirá en una nueva ventana)

A plan for the dissemination and exploitation of results and a report on societal implications will be prepared at the end of the project.Related Tasks: T8.1, T8.2, T8.3

Bench scale gasification test at TRL4 (se abrirá en una nueva ventana)

The selected feedstocks are gasified in order to validate the feedstock compatibility at TRL 4. The most suitable feedstock will be selected for the following pilot runs Related Tasks: T3.1

Stakeholders requirements and market needs (se abrirá en una nueva ventana)

An analysis to define the stakeholders(technology providers, feedstock suppliers, refineries, fuel traders, final end-users, etc.) requirements and specifications will be performed. Related Tasks: T2.1

Selection of 2 catalyst and preliminary processing conditions (se abrirá en una nueva ventana)

Hydrotreatment of purified TAGs will be first performed in a batch autoclave using a commercial hydrotreatment catalyst to analyze the catalyst performance.The purified TAGs will be hydrotreated in the pilot plant of KPRT in 16 parallel reactors.Related Tasks: T5.1, T5.2

Report on the Social LCA and Social CBA (se abrirá en una nueva ventana)

The social Life Cycle Analysis (s-LCA) is complementing the environmental LCA and LCC by adding extra dimensions of impact analysis while social cost-benefit analysis (s-CBA) is an extension of the economic CBA, adjusted to take into account the full spectrum of costs and benefits.Related Tasks: T7.4

Validation of TAG upgrading technology in industrially-relevant scale (se abrirá en una nueva ventana)

The pilot plant operation will aim in the production of a total liquid product, the fractionation of which will render approximately 1 barrel of renewable jet and 1 barrel of renewable marine diesel fuel.Related Tasks: T5.4

Determination of the main input parameters for the case studies (se abrirá en una nueva ventana)

Input data regarding the feedstock supply chain, as well as preliminary information gathering for the implementation of the techno-economic analysis. Related Tasks: T2.4

Analysis of selected feedstock (se abrirá en una nueva ventana)

Aiming to indicate the most promising biomass feedstock as concerns the potential capacity and its price. Fuel characterization consisting of the proximate, ultimate analysis, ash composition and fusibility, for the selected types of feedstock. Related Tasks: T2.3

Scale-up of TAG production (se abrirá en una nueva ventana)

The further conversion of acetate to TAGs will be scaled at BBEPP premises as the required equipment to ferment and isolate the TAGs will not be available in the mobile pilot unit. An additional quantity of acetate and impurities will be introduced and the final mixture will emulate the thermochemical properties of the liquid produced in the pilot.Related Tasks: T4.4, T4.5

Project Communication/Dissemination & Strategy Plan (PCSP) (se abrirá en una nueva ventana)

A Communication/Dissemination & Strategy Plan will be developed and continuously updated if needed throughout the entire duration of the project. Related Tasks: T8.1

Report on communication and dissemination activities 3 (se abrirá en una nueva ventana)

Report on communication and dissemination activities [M12, M18, M24, M30, M36, M42]Related Tasks: T8.2

Project website (se abrirá en una nueva ventana)

BioSFerA website able to connect the different actors involved and inform them about updates, news and coming events. Related Tasks: T8.2

Data Management Plan (se abrirá en una nueva ventana)

The first draft of the DMP will be prepared by M6 and it will be updated whenever significant changes arise and as a minimum at M18, M36 and M48. Related Tasks: T1.2

Piloting of the integrated synthesis gas and mobile fermentation unit (se abrirá en una nueva ventana)

3 test runs of 500 hours are executed at VTT's site. The synthesis gas plant is operated by VTT and the mobile fermentation unit is operated by BBEPP.Related Tasks: T4.3

Publicaciones

Integrating greenhouse gas capture and C1 biotechnology: a key challenge for circular economy (se abrirá en una nueva ventana)

Autores: José L. García, Beatriz Galán
Publicado en: Applied Microbiology International, Edición 15(1), 2021, ISSN 1365-2672
Editor: John Wiley & Sons, Ltd
DOI: 10.1111/1751-7915.13991

Design considerations of an integrated thermochemical/biochemical route for aviation and maritime biofuel production (se abrirá en una nueva ventana)

Autores: Nikolaos Detsios, Leda Maragoudaki, Konstantinos Atsonios, Panagiotis Grammelis, Nikolaos G. Orfanoudakis
Publicado en: Biomass Conversion and Biorefinery, Edición 14, 2024, Página(s) 27537-27555, ISSN 2190-6815
Editor: Springer Nature
DOI: 10.1007/s13399-023-03754-4

Hydroprocessing Microbial Oils for Advanced Road Transportation, Aviation, and Maritime Drop-In Fuels: Industrially Relevant Scale Validation (se abrirá en una nueva ventana)

Autores: Athanasios Dimitriadis, Loukia P. Chrysikou, Ioanna Kosma, Nikos Tourlakidis, Stella Bezergianni
Publicado en: Energies, Edición 17, 2024, Página(s) 3854, ISSN 1996-1073
Editor: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/en17153854

Recent Advances on Alternative Aviation Fuels/Pathways: A Critical Review (se abrirá en una nueva ventana)

Autores: Nikolaos Detsios, Stella Theodoraki, Leda Maragoudaki, Konstantinos Atsonios, Panagiotis Grammelis, Nikolaos G. Orfanoudakis
Publicado en: Energies, Edición 16, 2024, Página(s) 1904, ISSN 1996-1073
Editor: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/en16041904

Activated Carbons for Syngas Desulfurization: Evaluating Approaches for Enhancing Low-Temperature H2S Oxidation Rate (se abrirá en una nueva ventana)

Autores: Christian Frilund, Ilkka Hiltunen, Pekka Simell
Publicado en: ChemEngineering, Edición 5/2, 2021, Página(s) 23, ISSN 2305-7084
Editor: MDPI
DOI: 10.3390/chemengineering5020023

Demonstrating Pilot-Scale Gas Fermentation for Acetate Production from Biomass-Derived Syngas Streams (se abrirá en una nueva ventana)

Autores: Pedro Acuña López, Stefano Rebecchi, Elodie Vlaeminck, Koen Quataert, Christian Frilund, Jaana Laatikainen-Luntama, Ilkka Hiltunen, Karel De Winter, Wim K. Soetaert
Publicado en: Fermentation, Edición 10, 2025, Página(s) 285, ISSN 2311-5637
Editor: MDPI
DOI: 10.3390/fermentation10060285

Social impact assessment of biofuel production for maritime and aviation sectors: a case study of a pilot biorefinery project (se abrirá en una nueva ventana)

Autores: Evanthia Kostidi, Dimitrios Lyridis
Publicado en: Frontiers in Energy Research, Edición 12, 2024, ISSN 2296-598X
Editor: Frontiers Media S.A.
DOI: 10.3389/fenrg.2024.1454862

Life cycle assessment of novel thermochemical – biochemical biomass-to-liquid pathways for sustainable aviation and maritime fuel production (se abrirá en una nueva ventana)

Autores: Dimitrios-Sotirios Kourkoumpas, Adamantia Βon, Angeliki Sagani, Konstantinos Atsonios, Panagiotis Grammelis, Sotirios Karellas, Emmanouel Kakaras
Publicado en: Bioresource Technology, Edición 393, 2023, Página(s) 130115, ISSN 0960-8524
Editor: Elsevier BV
DOI: 10.1016/j.biortech.2023.130115

Techno-Economic Evaluation of Jet Fuel Production via an Alternative Gasification-Driven Biomass-to-Liquid Pathway and Benchmarking with the State-of-the-Art Fischer–Tropsch and Alcohol-to-Jet Concepts (se abrirá en una nueva ventana)

Autores: Nikolaos Detsios, Leda Maragoudaki, Stefano Rebecchi, Koen Quataert, Karel De Winter, Vassilis Stathopoulos, Nikolaos Orfanoudakis, Panagiotis Grammelis, Konstantinos Atsonios
Publicado en: Energies, Edición 17, 2024, Página(s) 1685, ISSN 1996-1073
Editor: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/en17071685

Screening of biogenic residues and setting up sustainable scenarios for commercial biorefineries around Europe

Autores: Vasiliki Gavidou, Nikolaos Detsios, Konstantinos Atsonios, Panagiotis Grammelis
Publicado en: GCGW-2021-9th Global Conference on Global Warming, Edición 7.3, 2021
Editor: GCGW-2021

Aviation and maritime biofuels production via a combined thermochemical/biochemical pathway: A conceptual design and process simulation study

Autores: Nikolaos Detsios, Leda Maragoudaki, Konstantinos A Atsonios Ville Nikkanen, Raul Piñero, Jose Mª Sanz Martín, Karel De Winter, Elodie Vlaeminck, Panagiotis Grammelis, Nikolaos G. Orfanoudakis
Publicado en: 34th International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems , ECOS 2021, Edición 155, 2021
Editor: ECOS 2021 Organizing Committee

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