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摘要:
Biomass is one of the most widely available energy sources and gasification is a thermal conversion process where biomass is transformed into a fuel gas with a gasifying agent. In this paper by using ASPEN Plus, a new steady state simulation model for down draft waste biomass gasification was developed. The model that is stoichiometric equilibrium-based is proposed to be used for optimization of the gasifier performance. Prediction accuracy of the model is validated by comparing with available experimental and modeling results in other literature. Then the model is used for comparative analysis of the gasification performance of sawdust, wood chips and mixed paper wastes. In the model, the operating parameters of temperature and equivalence ratio (ER) have been varied over wide range and their effect on syngas composition, syngas yield, low heating value (LHV) of syngas and cold gas efficiency (CGE) has been investigated. Raise in temperature increases the production of CO and H2 which leads to higher syngas yield, LHV and CGE. However, increasing ER decreases the production of CO and H2 which results lessens in LHV and CGE but syngas yield continuously increases because more oxygen is available for biomass reactions at high ER. The optimal values of CO and H2 mole fraction and CGE of sawdust, wood chips and mixed paper wastes are located at 900&degC, 1000&degC and 1000&degC, respectively and ER range is between 0.20 - 0.35 regardless of the kind of biomass which is used as the feedstock.
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篇名 Waste Biomass Gasification Simulation Using Aspen Plus: Performance Evaluation of Wood Chips, Sawdust and Mixed Paper Wastes
来源期刊 电力能源(英文) 学科 医学
关键词 WASTE Biomass GASIFICATION SIMULATION Model GASIFIER Performance WASTE to Energy
年,卷(期) 2019,(6) 所属期刊栏目
研究方向 页码范围 12-30
页数 19页 分类号 R73
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WASTE
Biomass
GASIFICATION
SIMULATION
Model
GASIFIER
Performance
WASTE
to
Energy
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期刊影响力
电力能源(英文)
月刊
2327-588X
武汉市江夏区汤逊湖北路38号光谷总部空间
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568
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