Lijun Jin
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Fast co-pyrolysis of a massive Naomaohu coal and cedar mixture using rapid infrared heating
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Indexed by:Journal Papers

Date of Publication:2020-02-01

Journal:ENERGY CONVERSION AND MANAGEMENT

Included Journals:EI、SCIE

Volume:205

ISSN No.:0196-8904

Key Words:Low-rank coal; Cedar; Co-pyrolysis; Infrared heating; Tar

Abstract:Few studies on co-pyrolysis of a massive low-rank coal and biomass mixture with a high heating rate were conducted. This study adopted a novel infrared heating technique to minimize the secondary reactions process and further to explore the co-pyrolysis interactions of primary volatiles-volatiles from Naomaohu coal and cedar, based on co-pyrolysis products distribution, tar quality and compositions, char compositions at varied pyrolysis temperatures and blending ratios. The results show that infrared heating technique was successfully used to confirm the existence of synergies from primary volatiles of coal and biomass. The highest coal tar yield in the infrared-heated reactor with 1200 degrees C/min is 20.27 wt%, which is 1.54 times as the Gray-King assay. Higher cedar content can promote the generation of char and suppress the pyrolysis of NMH coal. At the pyrolysis temperature of 600 degrees C, light tar content in tar exhibited an increasing trend from 58.0 wt% to 75.5 wt% with the cedar content, and the best synergistic performance was obtained at 75% of cedar content. In addition, the significantly higher methyl-contained phenols and naphthalenes and lower CH4 revealed the fact that cedar can obviously act as hydrogen donor during co-pyrolysis process. The analysis of char compositions shows that the H has been transferred to gas and liquid products from solid char during co-pyrolysis, which can well interpret the improvement of tar quality.

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Professor
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Supervisor of Master's Candidates

Gender:Male

Alma Mater:Dalian University of Technology

Degree:Doctoral Degree

School/Department:Institute of Coal Chemical Engineering, School of Chemical Engineering, Dalian University of Technology

Discipline:Chemical Technology. Energy Chemical Technology

Business Address:Room C429,Lab of Chemical Engineering,West Campus, Dalian University of Technology

Contact Information:+86-411-84986160

e-mail : ljin@dlut.edu.cn

电话 : 0411-84986160

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