Deposition onto heat exchanger surfaces from the co-firing of coal and biomass

dc.contributor.advisorSimms, Nigel J.
dc.contributor.advisorKilgallon, Paul
dc.contributor.advisorVilla, Raffaella
dc.contributor.authorLegrave, Nigel A
dc.date.accessioned2013-06-13T08:32:05Z
dc.date.available2013-06-13T08:32:05Z
dc.date.issued2011-12
dc.description.abstractIn the latter part of the 20th century, there has been a continuing global concern of the consumption of fossil fuels used in power production. There is further concern of the gaseous emissions that are created from this consumption and an awareness of climbing carbon dioxide (CO2) levels that are exhausted into the atmosphere. The concept of co-firing fossil fuel with varying levels of biomass species is not new but there is a requirement to explore its applications further in the interests of both the environment and power production. With dwindling fossil fuel resources, co-firing with biomass is a logical step forward as biomass is a generally a renewable product – whereas fossil fuels are not. More importantly, the study of effects of burning higher biomass percentages on the heat exchanger matrix of power plants requires more attention. This has been explored before in other studies that have resulted in inefficiencies within the power generation plant. The main of objectives of this research were to: co-fire coal with biomass over a wide range of mixes within a combustion environment; monitor the gaseous emissions and capture and analyse the deposits that are formed on deposit capture probes. The analysis of data obtained will enabled further research to be carried out and model deposit flux behaviour of simulated heat exchanger models and materials in the future.en_UK
dc.identifier.urihttp://dspace.lib.cranfield.ac.uk/handle/1826/7962
dc.language.isoenen_UK
dc.publisherCranfield Universityen_UK
dc.rights© Cranfield University 2011. All rights reserved. No part of this publication may be produced without the written permission of the copyright owneren_UK
dc.titleDeposition onto heat exchanger surfaces from the co-firing of coal and biomassen_UK
dc.typeThesis or dissertationen_UK
dc.type.qualificationlevelMastersen_UK
dc.type.qualificationnameMSc by Researchen_UK

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