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Modeling of gas/particle flow in coal conversion with a drop tube reactor using a lumped kinetic model accounting volatiles-char interaction

机译:使用集流动力学模型计算落差管反应器的煤转化中气体/颗粒流的模型,该模型考虑了挥发物-炭的相互作用

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Coal conversion including reforming of nascent tar over the char surface in a drop tube reactor (DTR) was studied both experimentally and numerically. Victorian brown coal and char prepared from the same coal were co-fed into an atmospheric DTR. The effects of reaction temperature (973-1173 K), solid hold-up (8.31 x 10(-6)-2.50 x 10(-4)), residence time (0-4.6 s for gas; 0-0.78 s for solid particles), and steam partial pressure (0-0.05 MPa) on the conversion characteristics were investigated. A 4-lump kinetic model consisting of tar, gases, char, and soot with 6 global reactions was developed based on the experimental results. The lumped kinetic model was integrated with a computational fluid dynamics (CFD) simulation using an Eulerian-Eulerian approach for mixed phase flow to simulate the coal conversion experiments in the DTR. The CFD results for product distribution during coal conversion in the DTR showed reasonable agreement with the experimental results. The CFD approach presented is suitable for use in designing and optimizing a pyrolyzer for a triple-bed combined circulating fluidized-bed coal gasifier, consisting of a downer (pyrolyzer), a bubbling fluidized bed (gasifier), and a riser (combustor). (C) 2015 Elsevier B.V. All rights reserved.
机译:实验和数值研究了煤转化,包括在滴管反应器(DTR)中在焦炭表面重整新生的焦油。维多利亚时代的褐煤和由相同的煤制得的炭被共同喂入大气DTR。反应温度(973-1173 K),固体滞留率(8.31 x 10(-6)-2.50 x 10(-4)),停留时间(气体为0-4.6 s;固体为0-0.78 s)的影响颗粒和蒸汽分压(0-0.05 MPa)对转化特性的影响。根据实验结果,开发了一个由4个整体反应组成的由焦油,气体,炭和烟灰组成的4块动力学模型。集总动力学模型与计算流体力学(CFD)模拟集成在一起,该模拟流体动力学使用欧拉-欧拉方法进行混合相流模拟DTR中的煤转化实验。 DTR中煤转化过程中产品分布的CFD结果与实验结果显示出合理的一致性。提出的CFD方法适用于设计和优化用于三床组合循环流化床煤气化炉的热解炉,该热解炉由下降器(热解器),鼓泡流化床(气化器)和立管(燃烧器)组成。 (C)2015 Elsevier B.V.保留所有权利。

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