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Three Zone Equilibrium And Kinetic Free Modeling Of Biomass Gasifier - A Novel Approach

机译:生物质气化炉的三区平衡和动力学免费建模

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Two zone equilibrium and kinetic free model proposed by the authors in their earlier work [Ratnadhariya JK, Channiwala SA. Two zone equilibrium and kinetic free modeling of gasifier. Proceedings of the 12th European Conference and Technical Exhibition on Biomass for Energy, Industry and Climate Protection. Amsterdam, The Netherlands; 2002. p. 813-816], offers gas composition, temperature profile and gasifier performance parameters for two zones. This model does not predict composition and temperature profile of pyrolysis zone, which is stated to be a precursor for gasification. Looking to this fact a three zone equilibrium and kinetic free model of biomass gasifier is proposed in the present work. In this three zone: first zone of the model is drying and pyrolysis zone combined together; second zone is oxidation zone; and the third zone is the reduction zone. Each zone has been formulated with: (1) reaction stoi-chiometry; (2) constituent balance; and (3) energy balance along with a few justifying assumptions. This model clearly provides an operating range of equivalence ratio and moisture content for the woody biomass materials. Further, this model facilitates the prediction of the maximum temperature in the oxidation zone of gasifier, which provides useful information for the design of the gasifier and selection of the material for the construction. The merits of the model lies in the fact that it is capable of handling predictions for all category of biomass materials with a wide operating range of equivalence ratio and moisture content in all of the three principal zones of the gasifier.
机译:作者在其早期工作中提出的两区平衡和无动力学模型[Ratnadhariya JK,Channiwala SA。气化炉的两区平衡和无动力学建模。第十二届欧洲会议有关能源,工业和气候保护的生物质技术展览会的论文集。荷兰阿姆斯特丹; 2002。 [813-816],提供了两个区域的气体成分,温度曲线和气化炉性能参数。该模型无法预测热解区的组成和温度分布,热解区据称是气化的前体。针对这一事实,提出了一种生物质气化炉的三区平衡和无动力学模型。在这三个区域中:模型的第一个区域是干燥和热解区域结合在一起;第二区是氧化区。第三个区域是还原区域。每个区域的配方如下:(1)反应化学计量; (2)成分平衡; (3)能量平衡以及一些合理的假设。该模型清楚地提供了木质生物质材料的当量比和水分含量的工作范围。此外,该模型有助于预测气化炉氧化区域内的最高温度,这为气化炉的设计和建筑材料的选择提供了有用的信息。该模型的优点在于,它能够处理所有类型的生物质材料的预测,在气化炉的三个主要区域中,当量比和水分含量的操作范围很广。

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