研究领域
Biofuel production processes (Fermentation, microalgae, lignocellulose)
Dairy processing (Casein micelles, powder, concentration)
Microalgal processing (Cell disruption, lipid extraction, biomass processing)
Dr Martin's research interests include:
Microalgal processing
- Efficient large-scale cell disruption of microalgae using high pressure homogenisation
- Application of advanced lipidomic methods to microalgal biotechnology
- Development of efficient lipid extraction processes for concentrated microalgal pastes
Dairy processing
- Physicochemical behaviour of milk during membrane filtration and the manufacture and rehydration of dairy powders
- Dynamics and structure of casein micelles
- Functionalised milk streams and double emulsions
Biofuel production processes
- Recovery of triacylglycerides from microalgae for biodiesel production
- Dilute acid hydrolysis and enzymatic conversion of lignocellulose to fermentable sugars
- Recombinant bacteria for fermentation of lignocellulose-derived sugars to ethanol
近期论文
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Zheng Q, Martin G, Kentish S. Energy efficient transfer of carbon dioxide from flue gases to microalgal systems. ENERGY & ENVIRONMENTAL SCIENCE. Royal Society of Chemistry. 2016, Vol. 9, Issue 3.
Martin G. Energy requirements for wet solvent extraction of lipids from microalgal biomass. BIORESOURCE TECHNOLOGY. Elsevier Science. 2016, Vol. 205.
Yap BHJ, Martin G, Scales P. Rheological manipulation of flocculated algal slurries to achieve high solids processing. ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS. Elsevier. 2016, Vol. 14.
Callahan D, Martin G, Hill D, Olmstead I, Dias D. Analytical Approaches for the Detailed Characterization of Microalgal Lipid Extracts for the Production of Biodiesel. Marine Algae Extracts : Processes, Products, and Applications. 2015. Editors: Kim SK, Chojnacka K.
Krysiak-Baltyn K, Martin G, Stickland A, Scales P, Gras S. Computational models of populations of bacteria and lytic phage. Critical Reviews in Microbiology. 2015.
Yap B, Dumsday GJ, Scales P, Martin G. Energy evaluation of algal cell disruption by high pressure homogenisation. BIORESOURCE TECHNOLOGY. Elsevier Science. 2015, Vol. 184.
Halim R, Webley P, Martin G. The CIDES process: Fractionation of concentrated microalgal paste for co-production of biofuel, nutraceuticals, and high-grade protein feed. Algal Research. Elsevier. 2015.
Spiden E, Scales P, Yap B, Kentish S, Hill D, Martin G. The effects of acidic and thermal pretreatment on the mechanical rupture of two industrially relevant microalgae: Chlorella sp and Navicula sp.. ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS. Elsevier. 2015, Vol. 7.
Takouridis S, Tribe D, Gras S, Martin G. The selective breeding of the freshwater microalga Chlamydomonas reinhardtii for growth in salinity. BIORESOURCE TECHNOLOGY. Elsevier Science. 2015, Vol. 184.
Burger W, Krysiak-Baltyn K, Scales P, Martin G, Stickland A, Gras S. The use of image analysis to characterise activated sludge flocs. APCChE Congress 2015 incorporating Chemeca 2015. Institution of Chemical Engineers. 2015.