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Investigating the Thermochemical Conversion of Biomass in a Downdraft Gasifier With a Volatile Break-Up Approach

机译:利用挥发性分解方法研究下吸式气化炉中生物质的热化学转化

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摘要

An affordable, reliable and clean energy supply is the major challenge facing by the modern world. Biomass energy is playing a promising role to that, but gasification technology able to convert biomass efficiently to valuable gases for power and heat generation is a vital need. The aim of this study is to develop a robust computational fluid dynamics (CFD) model to better understand the gasification thermochemical processes of a selected biomass (rubber wood) in a 20 kW downdraft gasifier, which includes all the four zones, drying, pyrolysis, oxidation and reduction. A step-by-step approach is proposed to evaluate the composition of different species as a result of volatile break-up during gasification. Effect of the equivalence ratio on the synthesis gas composition is studied with results validated against a kinetic model.
机译:负担得起,可靠和清洁的能源供应是现代世界面临的主要挑战。生物质能在这方面发挥着令人鼓舞的作用,但是气化技术能够将生物质有效地转化为有价值的气体以产生电能和热量是至关重要的。这项研究的目的是建立一个强大的计算流体动力学(CFD)模型,以更好地了解20 kW下浮式气化炉中所选生物质(橡胶木)的气化热化学过程,该过程包括干燥,热解,氧化和还原。提出了一种分步方法来评估由于气化过程中挥发物分解而导致的不同物质的组成。研究了当量比对合成气成分的影响,并针对动力学模型验证了结果。

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