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首页|期刊导航|生物质化学工程|松木屑在氧气-水蒸气-二氧化碳氛围下的气化模拟研究

松木屑在氧气-水蒸气-二氧化碳氛围下的气化模拟研究

曹斌奇 刘运权 王夺

生物质化学工程2017,Vol.51Issue(3):14-20,7.
生物质化学工程2017,Vol.51Issue(3):14-20,7.DOI:10.3969/j.issn.1673-5854.2017.03.003

松木屑在氧气-水蒸气-二氧化碳氛围下的气化模拟研究

Simulation of Pine Sawdust Gasification with Oxygen,Steam and Carbon Dioxide as Gasifying Agents

曹斌奇 1刘运权 1王夺1

作者信息

  • 1. 厦门大学能源学院,福建 厦门 361102
  • 折叠

摘要

Abstract

Using Aspen Plus software,a model was developed to simulate the gasification of pine sawdust with steam-oxygen-carbon dioxide as gasifying agent.At first,the model was verified by the data of literature and the results showed that the model was reliable.And then,the effects of gasification temperature,oxygen equivalence ratio(cER),the mass ratio of steam to biomass(mS/mB) as well as the mass ratio of carbon dioxide to biomass(mCO2/mB) on gas composition,low heating value,yield,gasification efficiency and H/C ratio(nH2/nCO) in the produced gas were studied.The low heating value,yield,gasification efficiency and H/C ratio of the produced gas reached 7.45MJ/m3,1.78m3/kg,73.3%,1.79 respectively under the optimum reaction conditions of 850℃,101.325kPa,cER=0.2,mS/mB=1,mCO2/mB=0.6.Higher gasification temperature was favorable to the process of biomass gasification.With the increased cER,the low heating value,gas yield and gasification efficiency decreased rapidly,while H/C ratio was basically keeping stable.The amount of steam added into gasification agent enhanced H2 content in the produced gas;while appropriate amount of CO2 added would improve the CO content.Therefore,either of the above two measures could effectively adjust the H/C ratio in the produced gas.

关键词

生物质气化/模拟/AspenPlus/气化介质

Key words

biomass gasification/simulation/Aspen Plus/gasification agent

分类

化学化工

引用本文复制引用

曹斌奇,刘运权,王夺..松木屑在氧气-水蒸气-二氧化碳氛围下的气化模拟研究[J].生物质化学工程,2017,51(3):14-20,7.

基金项目

福建省科技厅高校产学合作项目(2016H61010067) (2016H61010067)

生物质化学工程

OA北大核心

1673-5854

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