Controlling selectivity of catalysts through the interaction of cobalt with promotors: Using computational modelling

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Title
Controlling selectivity of catalysts through the interaction of cobalt with promotors: Using computational modelling

CoPED ID
e7223198-227c-4160-ac94-8c45afcfcb34

Status
Active

Funder

Value
No funds listed.

Start Date
Sept. 30, 2022

End Date
Sept. 29, 2026

Description

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Achieving net zero emissions will require multiple technologies to be developed and realised in the coming years. Fischer-Tropsch (FT) is one such technology, with emergent application in the conversion of waste into ultra clean fuels, leading to approximately 80% emission reductions over landfill. Over several years, an understanding of the Co-based FT catalyst has been developed, and the role of promotional additives has proven critical during synthesis, catalyst treatment, and FT synthesis; however, knowledge of how these promoters affect the chemistry remain poorly understood, with most progression to-date based on observation and hypothesis. Using state-of-the-art molecular modelling, this project aims to elucidate exactly how these additives impact catalyst formation and the subsequent application in FT synthesis, providing foundations to make more robust, sustainable and efficient catalysts.
The project will use a multiscale combination of first-principles density functional theory (DFT) and microkinetic simulations to investigate the chemistry of interest (interaction of Co and promoters with catalyst support; phases stability of CoOx/MOx during pre-catalyst reduction; selectivity of reaction products with changing Co catalyst structure)

Cardiff University LEAD_ORG
BP Chemicals Ltd STUDENT_PP_ORG

Andrew Logsdail SUPER_PER
Akash Hiregange STUDENT_PER

Subjects by relevance
  1. Emissions
  2. Catalysis
  3. Catalysts
  4. Reactions
  5. Reduction (chemistry)
  6. Technological development
  7. Chemistry

Extracted key phrases
  1. FT catalyst
  2. Co catalyst structure
  3. Catalyst reduction
  4. Catalyst support
  5. Catalyst treatment
  6. Efficient catalyst
  7. Catalyst formation
  8. FT synthesis
  9. Selectivity
  10. Computational modelling
  11. Emission reduction
  12. Art molecular modelling
  13. Interaction
  14. Multiple technology
  15. Principle density functional theory

Related Pages

UKRI project entry

UK Project Locations