Simulation analysis of municipal solid waste pyrolysis and gasification based on Aspen plus

被引:0
作者
Na Deng
Dongyan Li
Qiang Zhang
Awen Zhang
Rongchang Cai
Biting Zhang
机构
[1] Tianjin University,School of Environmental Science and Engineering
[2] MOE Key Laboratory of Efficient Utilization of Low and Medium Grade Energy,undefined
[3] Tianjin University Research Institute of Architectural Design & Urban Planning,undefined
来源
Frontiers in Energy | 2019年 / 13卷
关键词
municipal solid waste (MSW); pyrolysis; gasification; Aspen plus; simulation;
D O I
暂无
中图分类号
学科分类号
摘要
To predict and analyze the municipal solid waste (MSW) pyrolysis and gasification process in an updraft fixed bed more veritably and appropriately, numerical modeling based on Gibbs energy minimization was executed using the Aspen plus software. The RYield module was combined with the RGibbs module to describe the pyrolysis section, while the RGibbs module was used for the gasification section individually. The proposed model was used to forecast and analyze the target performance parameters including syngas composition, lower heating value (LHV) and carbon conversion rate under different conditions of the gasification temperatures, and ratios and types of gasifying agents. The results indicate that there is a good agreement between the experimental data and the simulated data obtained using this model. The predicted optimum gasification temperature is approximately 750°C, and the best ratio of water vapor as gasifying agent is around 0.4. The mixture of flue gas and water vapor has an economical and recycled prospect among four commonly used gasifying agents.
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页码:64 / 70
页数:6
相关论文
共 39 条
  • [1] Zhang Q L(2013)A thermodynamic analysis of solid waste gasification in the Plasma Gasification Melting process Applied Energy 112 405-413
  • [2] Wu Y S(2015)Pyrolysis and simulation of typical components in wastes with macro-TGA Fuel 157 1-8
  • [3] Dor L(2013)Thermodynamic equilibrium analysis of coal gasification using Gibbs energy minimization method Energy Conversion and Management 65 755-763
  • [4] Yang W H(2006)Conceptual design and simulation study of a co-gasification technology Energy Conversion and Management 47 1416-1428
  • [5] Blasiak W(2010)Aspen plus simulation of biomass integrated gasification combined cycle systems at corn ethanol plants Biomass and Bioenergy 56 197-210
  • [6] Meng A(2014)A numerical investigation of municipal solid waste gasification using aspen plus Procedia Engineering 90 710-717
  • [7] Chen S(2008)Simulation of biomass gasification in fluidized bed reactor using ASPEN PLUS Biomass and Bioenergy 32 1245-1254
  • [8] Zhou H(2008)Simulation of hydrogen production from biomass gasification in interconnected fluidized beds Biomass and Bioenergy 32 120-127
  • [9] Long Y(2013)Simulation of municipal solid waste gasification in two different types of fixed bed reactors Fuel 103 58-63
  • [10] Zhang Y(2009)Hydrogen-rich gas from catalytic steam gasification of municipal solid waste (MSW): influence of steam to MSW ratios and weight hourly space velocity on gas production and composition International Journal of Hydrogen Energy 34 2174-2183