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Name: |
Professor K Wilson |
Organisation: |
Griffith University |
Department: |
Environmental and Applied Science |
Current EPSRC-Supported Research
Topics: |
Catalysis & Applied Catalysis
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Design & Testing Technology
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Design of Process systems
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Current EPSRC Support |
EP/R026645/1 | The UK Catalysis Hub - 'Science': 2 Catalysis at the Water-Energy Nexus | (C) |
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Previous EPSRC Support |
EP/K014706/2 | The UK Catalysis Hub | (C) |
EP/K036548/2 | Development of fast pyrolysis based advanced biofuel technologies for biofuels | (C) |
EP/K036548/1 | Development of fast pyrolysis based advanced biofuel technologies for biofuels | (C) |
EP/K000616/2 | Tuning Catalyst Surfaces to Control Aldol Reactions in Biomass Conversion | (P) |
EP/K014706/1 | The UK Catalysis Hub | (C) |
EP/K000616/1 | Tuning Catalyst Surfaces to Control Aldol Reactions in Biomass Conversion | (P) |
EP/K014749/1 | Catalytic Routes to Intermediates for Sustainable Processes | (C) |
EP/K014676/1 | Ionic Liquid Biorefining of Lignocellulose to Sustainable Polymers | (C) |
EP/F063423/2 | Designer Catalysts for High Efficiency Biodiesel Production | (P) |
EP/F063423/1 | Designer Catalysts for High Efficiency Biodiesel Production | (P) |
EP/E046754/1 | Operando Studies of Palladium-Catalysed Cross-Coupling Surface Chemistry | (C) |
EP/F009488/1 | Nanoparticle-doped Mesoporous Silicates / Synthetic Developments and Applications in Catalysis | (C) |
EP/D051126/1 | Adventurous Chemistry at York | (C) |
EP/E013090/1 | Optimising molecular architectures for heterogeneous catalysis in nanoporous solids | (P) |
GR/R39436/01 | Supported Thin Films as Models for sulphated metal oxide catalysts. | (P) |
GR/R10523/01 | Green Chemistry Research Network | (C) |
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Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator
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