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Design, analysis, and performance evaluation of steam-CO2 reforming reactor for syngas production in GTL process

机译:GTL工艺合成气用蒸汽-CO2重整反应器的设计,分析和性能评估

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摘要

Design and thermal-fluidic analysis of CH4 steam-CO2 reforming (SCR) reactor for gas to liquid-floating production storage and offloading (GTL-FPSO) is presented in this paper. The temperature distribution through the SCR reactor should be uniform in order to optimize the catalytic reforming reaction. The numerical analysis of heat, flow and catalytic reactions was used to design the SCR reactor. The kinetic constants for catalytic analysis were calculated from Arrhenius plot that was obtained by SCR experiments on Ni/Al2O3 pellet catalysts. The catalysts were prepared by impregnating Ni into commercial Al2O3 pellets. The reaction temperatures ranged from 1023 K to 1173 K. The CH4 and CO2 conversions increased with the temperature, while H-2/CO ratio of syngas decreased with the increase of temperature. And the metallic foam catalyst showed a higher CH4 conversion than a pellet catalyst. The commercial FLUENT code was used to predict the temperature distribution in the SCR reactor. It was shown that the performance of SCR reactor depends strongly on the temperature distribution through the catalysts. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文介绍了CH4蒸汽-CO2重整(SCR)反应器的设计和热流分析,该反应器用于气液浮选产品的存储和卸载(GTL-FPSO)。为了优化催化重整反应,通过SCR反应器的温度分布应该是均匀的。利用热,流动和催化反应的数值分析来设计SCR反应器。催化分析的动力学常数由Arrhenius图计算得出,该图通过SCR实验在Ni / Al2O3颗粒催化剂上获得。通过将Ni浸渍到商业Al2O3颗粒中来制备催化剂。反应温度范围为1023 K至1173K。CH4和CO2转化率随温度升高而增加,而合成气的H-2 / CO比随温度升高而降低。并且金属泡沫催化剂显示出比粒状催化剂更高的CH 4转化率。商业FLUENT代码用于预测SCR反应器中的温度分布。结果表明,SCR反应器的性能在很大程度上取决于通过催化剂的温度分布。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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