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Coal particle and bed physical transformational behaviour after thermochemical conversion in a fixed bed

机译:固定床热化学转化后的煤颗粒和床层物理转化行为

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This paper examines the physical transformational behaviour that coal particles and the bed structure undergo in a fixed bed reactor. The transient overfeed configuration is used with feed gas entering from the bottom of the 1.2 m reactor with an inner diameter of 104 mm. The fuel bed loading, of 3.3 kg on average, consisted of non-devolatilized seam two coal of 4, 6 and 8 mm particles from the Highveld region in South Africa and was inertinite-rich. Transient exit gas composition and temperature profile inside the fixed bed of particles, is presented along with a full chemical and physical characterisation of the feed coal and the partially converted bed contents consisting of coal, char and ash particles. The bed dissection method implemented was designed to limit mechanical fragmentation by minimizing particle handling and bed structural disturbance during sampling. Particle size distribution and the particle size distribution width showed a significant variation in the oxidation zone and the ash bed which was not previously quantified on industrial scale experiments. The bulk, true as well as the apparent (measured by hydrostatically weighing in mercury) densities are reported for the different reaction zones of pyrolysis, reduction, oxidation and the ash bed, and showed significant variation in each zone. The particles and the fixed bed structural change were established by the measured particle porosity and the fixed bed voidage. The extensive role of particle agglomeration in the lower sections of the fixed bed was demonstrated in the bed voidage data and is evidently tracked as the reaction front moves up through the fixed bed of particles. The mode of operation simulated the transient start-up procedure and subsequent particle and bed transformational behaviour during industrial fixed bed combustion and gasification. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文研究了固定床反应器中煤颗粒和床结构所经历的物理转变行为。瞬时过量进料配置用于从内径为104 mm的1.2 m反应器底部进入的进料气。燃料床平均负荷为3.3千克,由来自南非Highveld地区的非脱挥发煤煤层,分别为4、6和8毫米颗粒的两种煤组成,并且富含惰质石。给出了固定床颗粒内部的瞬态出口气体组成和温度曲线,以及进料煤的完全化学和物理特性以及由煤,炭和灰分颗粒组成的部分转化床内容物。设计的床解剖方法旨在通过最小化采样过程中的颗粒处理和床结构扰动来限制机械破碎。粒度分布和粒度分布宽度在氧化区和灰床中显示出显着变化,这在工业规模实验中以前并未量化。报告了热解,还原,氧化和灰化床不同反应区的真实密度和表观密度(通过静水压汞法测量),并且每个区均显示出显着变化。颗粒和固定床的结构变化是通过测量的颗粒孔隙率和固定床空隙率确定的。固定床下部的颗粒团聚作用广泛,已在床空隙率数据中得到证实,并且随着反应前沿向上移动通过固定床颗粒,显然可以追踪到。该操作模式模拟了工业固定床燃烧和气化过程中的瞬态启动程序以及随后的颗粒和床层转化行为。 (C)2016 Elsevier B.V.保留所有权利。

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