www.prodeox.proj.kth.se
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Submitted URL: http://www.prodeox.proj.kth.se/
Effective URL: https://www.prodeox.proj.kth.se/
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Submission: On September 28 via api from US — Scanned from SE
Effective URL: https://www.prodeox.proj.kth.se/
Submission Tags: falconsandbox
Submission: On September 28 via api from US — Scanned from SE
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Skip to main content kth.se * kth.se * Student web * Intranet * kth.se * Student web * Intranet Login * Studies STUDIES close * Research RESEARCH close * Collaboration COLLABORATION close * About KTH ABOUT KTH close * Library LIBRARY close Close * Studies Close * Research Close * Collaboration Close * About KTH Close * Library Close Main menu Close STUDIES Main menu Close RESEARCH Main menu Close COLLABORATION Main menu Close ABOUT KTH Main menu Close LIBRARY * Search Search the KTH websiteSearch Menu * KTH * F3-ProDeox F3-ProDeox Close F3-PRODEOX * Start * About F3-ProDeox * Publications and reports * News and events * Contact and partners F3-PRODEOX * Start * About F3-ProDeox * Publications and reports * News and events * Contact and partners ROUTES FOR PRODUCTION OF TRANSPORTATION FUELS VIA DEOXYGENATED BIO OIL Hydrogen is necessary for Sweden to have transportation fuels from biogenic feedstocks. In Prodeox, we are researching techno-economic and environment friendly processes to produce this hydrogen. This project is carried out within the collaborative research program Renewable transportation fuels and systems (Förnybara drivmedel och system), Project no. P50466-1. The project is financed by the Swedish Energy Agency and f3 – Swedish Knowledge Centre for Renewable Transportation Fuels. Large R&D efforts have been directed towards studying pyrolysis processes for biooil production and upgrading to transportation fuels. However, there is still a gap in scientific literature about integration of different processes/technologies for producing clean hydrogen for the hydrodeoxygenation step for bio-oil upgrading. The figure above shows the integration of four possible hydrogen generation processes (i) biomass gasification (w/wo CCS) (ii) NG reforming (w/wo CCS) (iii) electrolysis (iv) IH2 , with the bio-oil upgrading process. This project aims at developing and strengthening knowledge about production of biofuels via biomass feedstock pyrolysis and hydrodeoxygenation, including various hydrogen sources, to produce stable bio-oil that can be further upgraded in existing refinery plants to gasoline, diesel and jet fuel. Four different process routes, including also the refinery and CCS (when relevant) will be investigated. Key performance indicators associated with energy and economic performance and important insights on opportunities and constraints of possible utilization and integration of process routes in existing infrastructure will be provided. The project partners include KTH Royal Institute of Technology, Chalmers University of Technology and Cortus Energy AB. KTH Taggar: * transportation fuels * hydrodeoxygenation * pyrolysis bio-oil * biomass gasification Page responsible:Shareq Mohd Nazir Belongs to: F3-ProDeox Last changed: Mar 19, 2021 KTH * Study at KTH * Research * Cooperation * About KTH * Student at KTH * Alumni * KTH Intranet ORGANISATION * KTH Library * KTH Schools * Competence centres * President and management * University Administration SERVICES * Timetables * Course and programme directory * Course, programme and group webs * Learning management system (Canvas) * Webmail CONTACT KTH Royal Institute of Technology SE-100 44 Stockholm Sweden +46 8 790 60 00 * Contact KTH * Work at KTH * Press and media * About KTH website To page top This website uses services that may store information about you and how you use the website. Some services are necessary for the website to work, and others are optional. Manage servicesAccept only necessary servicesAccept all services