Investigation on the co-combustion of low calorific oil shale and its semi-coke by using thermogravimetric analysis

•The co-combustion characteristic parameters were studied.•The co-combustion of oil shale and semi-coke could be expressed roughly by the addition of individual components.•Activation energy was calculated by Coats-Redfern, distributed activation energy model and Flynn-Wall-Ozawa methods. In the pre...

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Veröffentlicht in:Energy conversion and management 2017-03, Vol.136, p.99-107
Hauptverfasser: Yang, Yu, Lu, Xiaofeng, Wang, Quanhai
Format: Artikel
Sprache:eng
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Zusammenfassung:•The co-combustion characteristic parameters were studied.•The co-combustion of oil shale and semi-coke could be expressed roughly by the addition of individual components.•Activation energy was calculated by Coats-Redfern, distributed activation energy model and Flynn-Wall-Ozawa methods. In the present work, thermogravimetric analysis was employed to investigate co-combustion behaviors of Fushun low calorific oil shale and its semi-coke. The synergy effect was estimated by using the interaction coefficient and the relative error of mean square root. In addition, activation energy was also calculated by means of Coats-Redfern, distributed activation energy model and Flynn-Wall-Ozawa methods. Results indicated that with the increase of oil shale mass fraction and oxygen concentration, combustion characteristics of the samples were improved. And some little interaction did occur during the co-combustion process, but it was relatively slight. Consequently, the co-combustion of oil shale and semi-coke still could be expressed roughly by the addition of individual components of the mixtures. Furthermore, activation energy of the samples decreased slowly at the initial stage attributed to the minerals’ catalytic effects, and in the final stage, it jumped to a high value, suggesting that the burnout of the samples was difficult. Besides, the mix proportion of oil shale which was added to stabilize the combustion in the circulating fluidized bed was also theoretically calculated.
ISSN:0196-8904
1879-2227
DOI:10.1016/j.enconman.2017.01.006