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Pyrolysis Characteristics and Kinetics of Municipal Solid Waste

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【作者】 李海英张书延赵新华EIJI Suzuki

【Author】 LI Haiying ZHANG Shuting ZHAO Xinhua EIJI Suzuki3 (1. School of Environment Science and Technology, Tianjin University, Tianjin 300072, China; 2. School of Metallurgy and Energy, Hebei Polytechnic University, Tangshan 063009, China; 3. Department of Fine Material Engineering, Shinshu University, Tokida Ueda 386-8567, Japan)

【机构】 School of Environment Science and TechnologyTianjin UniversityDepartment of Fine Material EngineeringShinshu University Tianjin 300072China School of Metallurgy and EnergyHebei Polytechnic UniversityTangshan 063009ChinaTianjin 300072ChinaTokida Ueda 386-8567Japan

【Abstract】 Based on a systemic survey, the pyrolysis characteristics and apparent kinetics of the mu- nicipal solid waste (MSW) under different conditions were researched using a special pyrolysis re- actor, which could overcome the disadvantage of thermo-gravimetric analyzer. The thermal decom- position behaviour of MSW was investigated using thermo-gravimetric ( TG ) analysis at rates of 4.8, 6.6, 8.4, 12.0 and 13.2 K/min. The pyrolysis characteristics of MSW were also studied in dif- ferent function districts. The pyrolysis of MSW is a complex reaction process and three main stages are found according to the results. The first stage represents the degradation of cellulose and hemi- cellulose, with the maximum degradation rate occuring at 150 °C—200 °C; the second stage repre- sents dehydrochlorination and depolymerization of intermediate products and the differential thermo- gravimetric ( DTG) curves have shoulder peaks at about 300 °C; the third stage is the decomposi- tion of the residual big molecular organic substance and lignin at 400 °C—600 °C. Within the range of given experimental conditions, the results of non-linear fitting algorithm and experiment are in agreement with each other and the correlation coefficients are over 0.99. The kinetic characteristics are concerned with the material component and heating rate. The activation energy of reaction de- creases with the increase of heating rate.

【基金】 Supported by National Natural Science Foundation of China( No. 50378061).
  • 【文献出处】 Transactions of Tianjin University ,天津大学学报(英文版) , 编辑部邮箱 ,2005年05期
  • 【分类号】X705;
  • 【被引频次】3
  • 【下载频次】71
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