<div class="csl-bib-body">
<div class="csl-entry">Kusumawardhani, M. S. (2012). <i>Process simulation of biomass gasification for waste materials in developing countries using integrated CHP and heat pipe reformer technology</i> [Diploma Thesis, Technische Universität Wien]. reposiTUm. http://hdl.handle.net/20.500.12708/159595</div>
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/159595
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dc.description.abstract
A new technology development on biomass gasification called Heatpipe Reformer (HPR) patented by the Technical University of Munich, promises an innovative pressurized allothermal gasification technology, which can produce a hydrogen-rich, medium calorific value product gas which is low in nitrogen. The HPR technology basically separates the gasification and combustion zone into two parts, whereby the gasification zone is gasified by steam - therefore producing a low-nitrogen product gas, and the combustion zone uses air. The heat from the combustion zone is transferred to the gasification zone using so-called Heatpipes. There has been previous simulations using wood as feedstock, therefore this thesis wants to analyze the use of waste materials as feedstock. Sensitivity analysis to find ideal parameters from the process-design parameters are also being done. The efficiency results from these simulations using wood and waste materials are then being analyzed and discussed. This work uses IPSEpro simulation software.
en
dc.language
English
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dc.language.iso
en
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dc.subject
CHP
de
dc.subject
Heatpipe
de
dc.subject
Reformer
de
dc.subject
Abfall
de
dc.subject
Biomass
de
dc.subject
Vergasung
de
dc.subject
Erneurbare Energie
de
dc.subject
CHP
en
dc.subject
Heatpipe
en
dc.subject
Reformer
en
dc.subject
Waste
en
dc.subject
Biomass
en
dc.subject
Gasification
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dc.subject
Renewable Energy
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dc.title
Process simulation of biomass gasification for waste materials in developing countries using integrated CHP and heat pipe reformer technology
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dc.type
Thesis
en
dc.type
Hochschulschrift
de
dc.contributor.affiliation
TU Wien, Österreich
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tuw.thesisinformation
Technische Universität Wien
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dc.contributor.assistant
Gröbl, Thomas
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tuw.publication.orgunit
E302 - Institut für Energietechnik und Thermodynamik