油棕叶气化合成气的热值预测

S. M. Atnaw, S. Sulaiman, S. Yusup
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引用次数: 8

摘要

固体生物质气化产生的合成气的热值(CV)取决于生物质的类型以及气化炉的类型。此外,反应器温度、生物质含水率和空气燃料比等相互依赖的操作条件对合成气的组成和热值起主要作用。油棕叶(OPF)的气化在过去没有研究过,也没有关于合成气的预期成分或CV的工作。因此,有必要预测不同操作条件下合成气的CV,以便能够利用这种丰富的生物质废物的能源储备。利用ASPEN PLUS模拟模型对OPF下吸式气化合成气CV进行了预测。模拟结果显示了CV随操作条件(含水率、空气燃料比和氧化区温度)的变化。模型结果表明,当氧化区温度从500℃升高到1200℃时,预测的CV值在4.05 ~ 4.35 MJ/m3之间。CV随含水率的增加而减小。此外,通过与文献中报道的其他类型生物质原料气化的结果进行比较,获得了非常相似的CV变化模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prediction of calorific value of syngas produced from oil-palm fronds gasification
The calorific value (CV) of syngas produced from gasification of solid biomass varies depending on the type of biomass as well as the gasifier type. Moreover, the interdependent operating conditions like reactor temperature, moisture content of biomass, and air fuel ratio play a major role in the composition as well as calorific value of syngas. The gasification of oil-palm fronds (OPF) is not studied in the past, and there is no previous work on the expected composition or CV of syngas. Therefore, it is found necessary to predict the CV of syngas for different operating conditions, in order to be able to exploit the energy reserve of this abundantly available biomass waste. This paper presents the prediction of CV of syngas produced from downdraft gasification of OPF by making use of ASPEN PLUS simulation model. The results of the simulation showed how the CV varies with operating conditions: moisture content, air fuel ratio and oxidation zone temperature. The result of the model showed that the CV predicted vary in the range of 4.05 to 4.35 MJ/m3 for increase in the oxidation zone temperature from 500 to 1200°C. In addition, the CV showed a decrease with moisture content. Moreover, a closely similar pattern of change in CV is obtained, through comparison with results reported in literature for gasification of other types of biomass feedstock.
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