Projects per year
Abstract
The imminent use of hydrogen as an energy vector establishes the need for sustainable production technologies based on renewable resources. Starch is an abundant renewable resource suitable for bio-hydrogen generation. It was hypothesised that starch hydrolysates from a large (250 mL) hydrothermal reactor could support bioH2 fermentation without inhibition by toxic byproducts.
Starch was hydrolysed at high concentrations (40 200 g.L-1) in hot compressed water (HCW) with CO2 at 30 bar in a 250 mL reactor, the largest so far for polysaccharide hydrolysis, at 180 235 °C, 15 min. Hydrolysates were detoxified with activated carbon (AC) and tested in biohydrogen fermentations. The maximum yield of glucose was 548 g.kg starch 1 carbon at 200 °C. 5 hydroxymethyl furfural, the main fermentation inhibitor, was removed by AC to support 70% more hydrogen production than the untreated hydrolysates. The potential utilization of starch hydrolysates from HCW treatment for upscaled fermentations is promising.
Original language | English |
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Journal | International Journal of Hydrogen Energy |
DOIs | |
Publication status | Published - 1 Feb 2012 |
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Dive into the research topics of 'Hydrothermal hydrolysis of starch with CO2 and detoxification of the hydrolysates with activated carbon for bio-hydrogen fermentation'. Together they form a unique fingerprint.Projects
- 3 Finished
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Supply Chain Research Applied to Clean Hydrogen (SCRATCH)
Kendall, K. (Principal Investigator), Book, D. (Co-Investigator), Green, R. (Co-Investigator) & Macaskie, L. (Co-Investigator)
Engineering & Physical Science Research Council
1/05/07 → 31/10/10
Project: Research Councils
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Functional bionanomaterials and novel processing for targeted catalytic applications
Macaskie, L. (Principal Investigator), Shannon, I. (Co-Investigator) & Wood, J. (Co-Investigator)
Engineering & Physical Science Research Council
8/01/07 → 7/10/10
Project: Research Councils
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Resubmission novel bionanocatalysts and nanomagnets from solutions and metal bearing wastes
Macaskie, L. (Principal Investigator) & Wood, J. (Co-Investigator)
CETECH INNOVATION LTD, Biotechnology & Biological Sciences Research Council
15/11/06 → 28/02/10
Project: Research