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Rice husk gasification in a two-stage fixed-bed gasifier: Production of hydrogen rich syngas and kinetics

机译:两级固定床气化炉中的稻壳气化:富氢合成气的产生和动力学

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The purpose of this study is to evaluate the products of homogeneous cracking of rice husk tars and to investigate the conditions for production of hydrogen rich syngas. Experiments were performed in a two-stage downdraft fixed-bed gasifier as a function of temperature and residence times. Tars were generated with a medium heating rate of 25 K/min in a pyrolysis section of the gasifier. Generated tars were subsequently cracked by secondary reactions in gasification section. Tar conversion of about 91% was achieved. Tar cracking at higher temperatures resulted in the formation of hydrogen rich syngas. Secondary product yields and their kinetics were studied for tar cracking and individual gas formed by single reaction model and distributed activation energy model. A good fit of the data was obtained with the single-reaction model; however distributed activation energy model correlated the tar cracking kinetic parameters more closely than single-reaction model. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究的目的是评估稻壳焦油的均质裂解产物,并研究生产富氢合成气的条件。实验是根据温度和停留时间在两级下降气流固定床气化炉中进行的。在气化炉的热解段中,以25 K / min的中等加热速率生成焦油。生成的焦油随后在气化段中通过二次反应裂化。焦油转化率约为91%。较高温度下的焦油裂解导致形成富氢合成气。通过单一反应模型和分布活化能模型研究了焦油裂化和形成的各种气体的副产物收率及其动力学。通过单反应模型可以很好地拟合数据;然而,与单反应模型相比,分布式活化能模型与焦油裂解动力学参数之间的联系更为紧密。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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