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Experimental evaluation of a novel 20kWth in situ gasification chemical looping combustion unit with an iron ore as the oxygen carrier

Wang, Xiaojia; Jin, Baosheng; Zhu, Xiaoming; Liu, Hao

Experimental evaluation of a novel 20kWth in situ gasification chemical looping combustion unit with an iron ore as the oxygen carrier Thumbnail


Authors

Xiaojia Wang

Baosheng Jin

Xiaoming Zhu

HAO LIU LIU.HAO@NOTTINGHAM.AC.UK
Professor of Energy Engineering



Abstract

This study presents the results obtained from the operation of a 20 kWth in situ gasification chemical-looping combustion (iG-CLC) unit with a Chinese bituminous coal as the fuel and a natural iron ore as the oxygen carrier. This unit was built based upon the concept of a novel iG-CLC system evaluated through our previous cold-model tests. It is mainly composed of a high-flux circulating fluidized bed riser as the fuel reactor, a cross-flow moving bed as the air reactor, and a combination of an inertial separator and a cyclone separator as the separation system. The actual thermal power inputs from the coal for the reported tests in this study were about 11 kWth and the total duration reached about 70 h. The flow patterns and reaction characteristics of the whole system were investigated, and the effects of the fuel reactor temperature on the distributions of gas components in the two reactors were elucidated. At the fuel reactor temperature of 950 °C, the CO2 yield, gas conversion, carbon capture efficiency, and total solid fuel conversion reached high values at 90.47%, 92.77%, 97.12%, and 98%, respectively. During the reported tests, the iron ore exhibited adequate reactivity and oxygen transport capacity, good cyclic stability, low tendency for agglomeration and high resistance to attrition.

Citation

Wang, X., Jin, B., Zhu, X., & Liu, H. (2016). Experimental evaluation of a novel 20kWth in situ gasification chemical looping combustion unit with an iron ore as the oxygen carrier. Industrial & Engineering Chemistry Research, 55(45), 11775-11784. https://doi.org/10.1021/acs.iecr.6b03028

Journal Article Type Article
Acceptance Date Oct 20, 2016
Online Publication Date Nov 1, 2016
Publication Date Nov 16, 2016
Deposit Date Dec 9, 2016
Publicly Available Date Dec 9, 2016
Journal Industrial & Engineering Chemistry Research
Print ISSN 0888-5885
Electronic ISSN 0888-5885
Publisher American Chemical Society
Peer Reviewed Peer Reviewed
Volume 55
Issue 45
Pages 11775-11784
DOI https://doi.org/10.1021/acs.iecr.6b03028
Public URL https://nottingham-repository.worktribe.com/output/822468
Publisher URL http://pubs.acs.org/doi/abs/10.1021/acs.iecr.6b03028

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