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From industrial CO2 streams to added value Fischer-Tropsch chemicals


Data Management Plan

Data management plan will document the agreed IPR strategy and handling and use of the primary data.

Plan for dissemination activities

Dissemination Plan will report on specific actions, communication strategies, timing, tools, aims and data base for each target groups (Industrial Community, Scientific Community, Society).

Launch of public website

A public project website will be launched and used for the internal and external communication.

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The Effect of Atomic Layer Deposited Overcoat on Co-Pt-Si/γ-Al2O3 Fischer–Tropsch Catalyst

Author(s): Niko Heikkinen, Laura Keskiväli, Patrik Eskelinen, Matti Reinikainen, Matti Putkonen
Published in: Catalysts, Issue 11/6, 2021, Page(s) 672, ISSN 2073-4344
DOI: 10.3390/catal11060672

CO2 from direct air capture as carbon feedstock for Fischer-Tropsch chemicals and fuels: Energy and economic analysis

Author(s): Marco Marchese, Giulio Buffo, Massimo Santarelli, Andrea Lanzini
Published in: Journal of CO2 Utilization, Issue 46, 2021, Page(s) 101487, ISSN 2212-9820
DOI: 10.1016/j.jcou.2021.101487

Energy performance of Power-to-Liquid applications integrating biogas upgrading, reverse water gas shift, solid oxide electrolysis and Fischer-Tropsch technologies

Author(s): Marco Marchese, Emanuele Giglio, Massimo Santarelli, Andrea Lanzini
Published in: Energy Conversion and Management: X, Issue 6, 2020, Page(s) 100041, ISSN 2590-1745
DOI: 10.1016/j.ecmx.2020.100041

Kinetic Study Based on the Carbide Mechanism of a Co-Pt/γ-Al2O3 Fischer–Tropsch Catalyst Tested in a Laboratory-Scale Tubular Reactor

Author(s): Marco Marchese, Niko Heikkinen, Emanuele Giglio, Andrea Lanzini, Juha Lehtonen, Matti Reinikainen
Published in: Catalysts, Issue 9/9, 2019, Page(s) 717, ISSN 2073-4344
DOI: 10.3390/catal9090717

Simulation analysis of a Gas-to-Liquids (GTL) process based on CO2/steam reforming of natural gas

Author(s): Francesco Masilla
Published in: 2019, Page(s) 198

Cobalt catalyst characterization and modification by atomic layer deposition for Fischer-Tropsch synthesis

Author(s): Patrik Eskelinen
Published in: 2019, Page(s) 54