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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Study on biomass circulation and gasification performance in a clapboard-type internal circulating fluidized bed gasifier
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Study on biomass circulation and gasification performance in a clapboard-type internal circulating fluidized bed gasifier

机译:隔板式内部循环流化床气化炉中生物质循环和气化性能的研究

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摘要

We investigated the solid particle flow characteristics and biomass gasification in a clapboard-type internal circulating fluidized bed reactor. The effect of fluidization velocity on particle circulation rate and pressure distribution in the bed showed that fluidization velocities in the high and low velocity zones were the main operational parameters controlling particle circulation. The maximum internal circulation rates in the low velocity zone came almost within the range of velocities in the high velocity zone, when u sub(H)/u sub(m) sub(f)=2.2-2.4 for rice husk and u sub(H)/u sub(m) sub(f)=3.5-4.5 for quartz sand. In the gasification experiment, the air equvalence ratio (ER) was the main controlling parameter. Rice husk gasification gas had a maximum heating value of around 5000 kJ/m super(3) when ER=0.22-0.26, and sawdust gasification gas reached around 6000-6500 kJ/m super(3) when ER=0.175-0.24. The gasification efficiency of rice husk reached a maximum of 77% at ER=0.28, while the gasification efficiency of sawdust reached a maximum of 81% at ER=0.25.
机译:我们研究了隔板型内部循环流化床反应器中的固体颗粒流动特性和生物质气化。流化速度对床内颗粒循环速率和压力分布的影响表明,高,低速区的流化速度是控制颗粒循环的主要操作参数。当稻壳的u sub(H)/ u sub(m)sub(f)= 2.2-2.4时,低速区的最大内部循环率几乎处于高速区的速度范围内。对于石英砂,H)/ u子(m)子(f)= 3.5-4.5。在气化实验中,当量比(ER)是主要的控制参数。当ER = 0.22-0.26时,稻壳气化气的最大发热量约为5000 kJ / m super(3),当ER = 0.175-0.24时,锯末气化气的最大发热量约为6000-6500kJ / m super(3)。在ER = 0.28时,稻壳的气化效率最高达到77%,而在ER = 0.25时,木屑的气化效率最高达到81%。

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