DocumentCode
3124943
Title
Preparation and Desulfurization Behavior of Zinc Oxide Based Sorbent for Moderate Temperature
Author
Ju Shangguan ; Zhao, Yousheng ; Fan, Huiling ; Liang, Litong ; Shen, Fang ; Miao, Maoqian
Author_Institution
Key Lab. for Coal Sci. & Technol. of Minist. of Educ. & Shanxi Province, Taiyuan Univ. of Technol., Taiyuan, China
fYear
2010
fDate
18-20 June 2010
Firstpage
1
Lastpage
4
Abstract
Zinc oxide based moderate-temperature sorbents were obtained by mixing active zinc oxide with other additives, shaping, drying and calcinating in a given order. The influences of preparation conditions on the desulfurization behaviors for the prepared ZnO based desulfurization sorbent were carried out in simulated coal gas using a fixed-bed reactor. The changes of crystal phase before and after desulfurization were characterized by XRD. The experimental results showed that ZnO based desulfurization sorbent was effective for removing H2S in simulating coal gas at 300°C, space velocity 2000 h-1. When H2S concentration in inlet gas was 1100 mg/m3 and H2S concentration in outlet gas was no more than 0.1 mg/m3, the accumulated sorption sulfur capacity in the prepared ZnO based desulfurization sorbent reached 12 wt.%. But there is carbonyl sulfide in outlet gas during desulfurization process, and carbonyl sulfide concentration in outlet gas approached 40 mg/m3 as H2S concentration in out gas breakthrough. Both the decomposition temperature for precursor basic zinc carbonate and the additives for ZnO based sorbent influenced the desulfurization behavior of the prepared desulfurization sorbent. The best preparation conditions are shown in the following: both the decomposition temperature of basic zinc carbonated and the calcination temperature of ZnO sorbent are 500°C; the additive is graphite.
Keywords
additives; coal; environmental factors; graphite; sorption; sulphur compounds; zinc compounds; XRD; ZnO; additive; carbonyl sulfide; coal gas; crystal phase; desulfurization sorbent; fixed-bed reactor; graphite; moderate-temperature sorbent; sorption sulfur capacity; temperature 300 C; temperature 500 C; zinc oxide based sorbent; Additives; Calcination; Educational technology; Fossil fuels; Inductors; Power generation; Power generation economics; Temperature; Testing; Zinc oxide;
fLanguage
English
Publisher
ieee
Conference_Titel
Bioinformatics and Biomedical Engineering (iCBBE), 2010 4th International Conference on
Conference_Location
Chengdu
ISSN
2151-7614
Print_ISBN
978-1-4244-4712-1
Electronic_ISBN
2151-7614
Type
conf
DOI
10.1109/ICBBE.2010.5516626
Filename
5516626
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