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dissertation_bayham_2015_final_after_GS_review.pdf (7.7 MB)
ETD Abstract Container
Abstract Header
Iron-Based Coal Direct Chemical Looping Process for Power Generation: Experimental Aspects, Process Development, and Considerations for Commercial Scale
Author Info
Bayham, Samuel C.
Permalink:
http://rave.ohiolink.edu/etdc/view?acc_num=osu1425759077
Abstract Details
Year and Degree
2015, Doctor of Philosophy, Ohio State University, Chemical and Biomolecular Engineering.
Abstract
The significant increase in the average global temperature has been determined to be the result of anthropogenic release of greenhouse gases, such as carbon dioxide, into the atmosphere. With this in mind, nations have considered a carbon tax for emission of carbon dioxide into the atmosphere from point sources, such as power plants. However, carbon capture from power plants has proven to be expensive both economically and in terms of energy penalty due to endergonic nature of molecular separation. A number of technologies have been developed, such as oxycombustion, and gasification combined cycle that are able to capture carbon. However, these technologies require a means of providing either providing pure oxygen to oxidize the fuel or a molecular means to separate the carbon dioxide from nitrogen, both of which have the potential to be prohibitively expensive, in terms of capital expense and parasitic load. Chemical looping combustion has been considered a transformational technology for simultaneous carbon capture and electricity generation. The technology consists of providing oxygen to the fuel using a metal oxide in one reactor, producing pure carbon dioxde as the product, and combusting the metal oxide in a separate reactor to produce heat for steam and electricity generation. This configuration has been extensively studied by researchers around the world in small-scale pilot units. Furthermore, the iron-based CDCL technology has been demonstrated at Ohio State in a 25-kWth subpilot unit with reasonable success, with high conversions of solid fuels such as sub-bituminous coal and waste products such as metallurgical coke fines. Furthermore, the carbon dioxide purity in the flue gas is around 99%, with low values of carbon monoxide, methane, and hydrogen impurities. As of this writing, over 680 hours of operation have been performed in this unit, with a successful 200 hour continuous campaign. Furthermore, extensive laboratory bench unit studies have been performed that were used to verify the carbon char and volatile kinetics. This work attempts to review state-of-the-art chemical looping combustion systems for power generation. Designs and experimental results from pilot-scale chemical looping combustion demonstration units are discussed in relation to parameters relevant for a practical commercial unit. Furthermore, the work also reviews the design and experimental results from the Coal Direct Chemical Looping Unit developed at Ohio State. An extensive mass and energy balance has been performed to determine the system efficiency. Finally, further analysis shows the effects of sulfur, nitrogen and alkali materials on the oxygen carrier.
Committee
Liang-Shih Fan, PhD (Advisor)
W.S. Winston Ho, PhD (Committee Member)
Lisa Hall, PhD (Committee Member)
Pages
280 p.
Subject Headings
Chemical Engineering
Keywords
coal, chemical looping combustion, process engineering, fluidization, moving bed, entrained flow
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Refworks
EndNote
RIS
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Citations
Bayham, S. C. (2015).
Iron-Based Coal Direct Chemical Looping Process for Power Generation: Experimental Aspects, Process Development, and Considerations for Commercial Scale
[Doctoral dissertation, Ohio State University]. OhioLINK Electronic Theses and Dissertations Center. http://rave.ohiolink.edu/etdc/view?acc_num=osu1425759077
APA Style (7th edition)
Bayham, Samuel.
Iron-Based Coal Direct Chemical Looping Process for Power Generation: Experimental Aspects, Process Development, and Considerations for Commercial Scale.
2015. Ohio State University, Doctoral dissertation.
OhioLINK Electronic Theses and Dissertations Center
, http://rave.ohiolink.edu/etdc/view?acc_num=osu1425759077.
MLA Style (8th edition)
Bayham, Samuel. "Iron-Based Coal Direct Chemical Looping Process for Power Generation: Experimental Aspects, Process Development, and Considerations for Commercial Scale." Doctoral dissertation, Ohio State University, 2015. http://rave.ohiolink.edu/etdc/view?acc_num=osu1425759077
Chicago Manual of Style (17th edition)
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Document number:
osu1425759077
Download Count:
1,314
Copyright Info
© 2015, all rights reserved.
This open access ETD is published by The Ohio State University and OhioLINK.
Release 3.2.12