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Experimental study on air-stream gasification of biomass micron fuel (BMF) in a cyclone gasifier

机译:旋风气化炉中生物质微米燃料(BMF)气流气化的实验研究

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摘要

Based on biomass micron fuel (BMF) with particle size of less than 250 mu m, a cyclone gasifier concept has been considered in our laboratory for biomass gasification. The concept combines and integrates partial oxidation, fast pyrolysis, gasification, and tar cracking, as well as a shift reaction, with the purpose of producing a high quality of gas. In this paper, experiments of BMF air-stream gasification were carried out by the gasifier, with energy for BMF gasification produced by partial combustion of BMF within the gasifier using a hypostoichiometric amount of air. The effects of ER (0.22-0.37) and S/B (0.15-0.59) and biomass particle size on the performances of BMF gasification and the gasification temperature were studied. Under the experimental conditions, the temperature. gas yields, LHV of the gas fuel, carbon conversion efficiency, stream decomposition and gasification efficiency varied in the range of 586-845 degrees C, 1.42-2.21 N m(3)/kg biomass, 3806-4921 kJ/m(3), 54.44%-85.45%, 37.98%-70.72%, and 36.35%-56.55%, respectively. The experimental results showed that the gasification performance was best with ER being 3.7 and S/B being 0.31 and smaller particle, as well as H-2-content. And the BMF gasification by air and low temperature stream in the cyclone gasifier with the energy self-sufficiency is reliable. (c) 2008 Elsevier Ltd. All rights reserved.
机译:基于粒径小于250微米的生物质微米燃料(BMF),我们实验室已考虑使用旋风气化炉概念进行生物质气化。该概念结合并整合了部分氧化,快速热解,气化和焦油裂解以及变换反应,以产生高质量的气体。在本文中,通过气化炉进行了BMF气流气化的实验,利用化学计量比较低的空气,通过气化炉内BMF部分燃烧产生的BMF气化能量。研究了ER(0.22-0.37)和S / B(0.15-0.59)以及生物质粒径对BMF气化性能和气化温度的影响。在实验条件下,温度。气体产量,气体燃料的LHV,碳转化效率,物流分解和气化效率在586-845摄氏度,1.42-2.21 N m(3)/ kg生物量,3806-4921 kJ / m(3)的范围内变化,54.44%-85.45%,37.98%-70.72%和36.35%-56.55%。实验结果表明,气化性能最好,ER为3.7,S / B为0.31,颗粒更小,H-2-含量更高。并且在能量自给自足的旋风气化炉中通过空气和低温气流进行的BMF气化是可靠的。 (c)2008 Elsevier Ltd.保留所有权利。

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