An experimental investigation into mineral transformation, particle agglomeration and ash deposition during combustion of Zhundong lignite in a laboratory-scale circulating fluidized bed
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering
Reference37 articles.
1. Situation of combustion utilization of high sodium coal;Zhang;Proc CSEE,2013
2. Geochemistry and mineralogy of coal in the recently explored Zhundong large coal field in the Junggar basin, Xinjiang province, China;Zhou;Int J Coal Geol,2010
3. Characterization of ash particles from co-combustion with a Zhundong coal for understanding ash deposition behavior;Xu;Energy Fuels,2014
4. Effect of coal blending and ashing temperature on ash sintering and fusion characteristics during combustion of Zhundong lignite;Li;Fuel,2017
5. Investigation of agglomeration and defluidization during spouted-bed gasification of high-sodium, high-sulfur south Australian lignite;Mccullough;Energy Fuels,2011
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