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- 01HZF8ZSPDEAEX0JEKC2W24SRT classification C3.
- 01HZF8ZSPDEAEX0JEKC2W24SRT date "2024".
- 01HZF8ZSPDEAEX0JEKC2W24SRT language "eng".
- 01HZF8ZSPDEAEX0JEKC2W24SRT type conference.
- 01HZF8ZSPDEAEX0JEKC2W24SRT hasPart 01JHMP7MPD4DSW4XBD3B73MWWB.pdf.
- 01HZF8ZSPDEAEX0JEKC2W24SRT subject "Biology and Life Sciences".
- 01HZF8ZSPDEAEX0JEKC2W24SRT subject "Technology and Engineering".
- 01HZF8ZSPDEAEX0JEKC2W24SRT presentedAt urn:uuid:dc5ac325-9c0e-4592-a5d2-00890d39a51a.
- 01HZF8ZSPDEAEX0JEKC2W24SRT abstract "While polymers have become an indispensable part of our daily lives, the vast majority of current commercial polymers are still derived from fossil-based resources and thus contribute to climate change and global warming. Biopolymers, which are biodegradable and derived from renewable and sustainable resources, could offer a solution. However, to be able to cover the broad range of applications of fossil-derived plastics, new types of biopolymers have to be investigated. Even more, the associated production cost should be kept at a minimum to be able to compete with traditional products. With respect to this, the use of industrial gas streams rich in CO2 offers a promising route forward. Yet, in order to capture this CO2 through microbial processes, a significant amount of hydrogen gas is needed, increasing the costs of the process. This project aims to solve this issue by engineering a microbial strain to improve its hydrogen efficiency, thereby significantly lowering production costs. This engineered strain will then be tweaked to produce 2-pyrone-4,6-dicarboxylic acid (PDC) from CO2 as a new and vastly promising building block for the production of biodegradable biopolymers, paving the way towards the sustainable and cost-efficient production of bio-based building blocks for novel polymers with a wide variety of applications.".
- 01HZF8ZSPDEAEX0JEKC2W24SRT author 070B543A-F0EF-11E1-A197-91C894A0A6B4.
- 01HZF8ZSPDEAEX0JEKC2W24SRT author 235103e0-8e16-11ed-995d-eb99a67b0b82.
- 01HZF8ZSPDEAEX0JEKC2W24SRT author 24E451EC-F0EE-11E1-A9DE-61C894A0A6B4.
- 01HZF8ZSPDEAEX0JEKC2W24SRT author F32CB1B2-F0ED-11E1-A9DE-61C894A0A6B4.
- 01HZF8ZSPDEAEX0JEKC2W24SRT author FAAD4C30-F0ED-11E1-A9DE-61C894A0A6B4.
- 01HZF8ZSPDEAEX0JEKC2W24SRT author urn:uuid:794bec48-17f4-41d2-ae1e-8c26b85e398b.
- 01HZF8ZSPDEAEX0JEKC2W24SRT dateCreated "2024-06-03T14:45:23Z".
- 01HZF8ZSPDEAEX0JEKC2W24SRT dateModified "2025-01-16T08:36:11Z".
- 01HZF8ZSPDEAEX0JEKC2W24SRT name "Engineering microbial strains for the production of PDC from industrial gas streams".
- 01HZF8ZSPDEAEX0JEKC2W24SRT sameAs LU-01HZF8ZSPDEAEX0JEKC2W24SRT.
- 01HZF8ZSPDEAEX0JEKC2W24SRT sourceOrganization urn:uuid:77e3c55f-1f1b-4148-88e3-9e03e1b0ceda.
- 01HZF8ZSPDEAEX0JEKC2W24SRT type C3.