Development of a New Stoichiometric Equilibrium-Based Model for Wood Chips and Mixed Paper Wastes Gasification by ASPEN Plus

Sahar Safarianbana, Runar Unnthorsson, Christiaan Richter
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引用次数: 13

Abstract

Wood and paper residues are usually processed as wastes, but they can also be used to produce electrical and thermal energy through processes of thermochemical conversion of gasification. This study proposes a new steady state simulation model for down draft waste biomass gasification developed using the commercial software Aspen Plus for optimization of the gasifier performance. The model was validated by comparison with experimental data obtained from six different operation conditions. This model is used for analysis of gasification performance of wood chips and mixed paper wastes. The operating parameters of temperature and moisture content (MC) have been varied over wide range and their effect on the high heating value (HHV) of syngas and cold gas efficiency (CGE) were investigated. The results show that increasing the temperature improves the gasifier performance and it increases the production of CO and H2 which leads to higher LHV and CGE. However, an increase in moisture content reduces gasifier performance and results in low CGE.
基于ASPEN Plus的木屑和混合纸屑气化化学计量平衡新模型的建立
木材和纸张的残留物通常作为废物处理,但它们也可以通过气化的热化学转化过程用于产生电能和热能。本研究利用商业软件Aspen Plus开发了一种新的下排废生物质气化稳态模拟模型,用于优化气化炉性能。通过与6种不同工况下的实验数据对比,验证了模型的正确性。该模型用于木屑和混合纸屑的气化性能分析。研究了温度和含水率(MC)运行参数在较大范围内的变化对合成气高热值(HHV)和冷气效率(CGE)的影响。结果表明,温度的升高改善了气化炉的性能,增加了CO和H2的产量,从而提高了LHV和CGE。然而,水分含量的增加会降低气化炉的性能并导致低CGE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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