Sugarcane bagasse was co-pyrolyzed with lignite in a fixed bed reactor to investigate the possible interaction during co-pyrolysis. GC-MS revealed that the concentration of phenols and aliphatic compounds in the tar increased with the addition of sugarcane bagasse, while the content of aromatic compounds had the contradictory tendency. The phenol content in co-pyrolyzed tar reached 20.35%, which increased by 142.26% compared with the calculated values. The sugarcane bagasse decomposition peak partly overlapped with lignite pyrolysis peak from TG-DTG curves, which meant more interaction between lignite and sugarcane bagasse during the pyrolysis process. The difference between the experimental and calculated values of pyrolysis products yield, tar components, DTG values and kinetics analysis indicated the synergetic effect between lignite and sugarcane bagasse.
机构:
Hubei Coal Conversion and New Carbon Materials Key Laboratory, Wuhan,430081, ChinaHubei Coal Conversion and New Carbon Materials Key Laboratory, Wuhan,430081, China
Cheng, Xiaohan
He, Xuanming
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机构:
Hubei Coal Conversion and New Carbon Materials Key Laboratory, Wuhan,430081, China
School of Chemical Engineering and Technology, Wuhan University of Science and Technology, Wuhan,Hubei,430081, ChinaHubei Coal Conversion and New Carbon Materials Key Laboratory, Wuhan,430081, China
He, Xuanming
Chai, Jun
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Hubei Coal Conversion and New Carbon Materials Key Laboratory, Wuhan,430081, ChinaHubei Coal Conversion and New Carbon Materials Key Laboratory, Wuhan,430081, China
Chai, Jun
Rong, Fei
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Hubei Coal Conversion and New Carbon Materials Key Laboratory, Wuhan,430081, ChinaHubei Coal Conversion and New Carbon Materials Key Laboratory, Wuhan,430081, China
Rong, Fei
Huagong Jinzhan/Chemical Industry and Engineering Progress,
2016,
35
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: 105
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109