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Syngas production in a novel methane dry reformer by utilizing of tri-reforming process for energy supplying: Modeling and simulation

机译:利用三重整工艺供气的新型甲烷干重整炉中的合成气生产:建模和仿真

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In this study, tri-reforming process has been utilized as an energy source for driving highly endothermic process of methane dry reforming process in a multi-tubular recuperative thermally coupled reactor (TCTDR). 184 two-concentric-tubes have been proposed for this configuration. Outer tube sides of the two-concentric-tubes have been considered for the tri-reforming reactions while dry reforming process takes place in inner tube sides. Simulation results of co-current mode have been compared with corresponding predictions of thermally coupled tri- and steam reformer (TCTSR); in which the tri-reforming process has been coupled with steam reforming of methane in same conditions. A mathematical heterogeneous model has been applied to simulate both dry and tri-reforming sides of the TCTDR. Results showed that methane conversion at the output of dry and tri-reforming sides reached to 63% and 93%, respectively. Also, molar flow rate of syngas at the output of DR side of TCTDR reached to 7464 kmol h~(-1) in comparison to 3912 kmol h~(-1) for SR side of TCTSR.
机译:在这项研究中,三重整工艺已被用作驱动多管回热式热耦合反应器(TCTDR)中甲烷干重整过程的高度吸热过程的能源。已经提出了用于这种构造的184个两个同心管。已经考虑到两个同心管的外管侧进行三重整反应,而在内管侧进行干重整过程。将并流模式的仿真结果与热耦合三重整和蒸汽重整器(TCTSR)的相应预测进行了比较;其中三重整工艺已在相同条件下与甲烷的蒸汽重整相结合。数学异质模型已被应用于模拟TCTDR的干燥侧和三重侧。结果表明,干燥侧和三重侧输出的甲烷转化率分别达到63%和93%。此外,与TCTSR SR侧的3912 kmol h〜(-1)相比,TCTTR的DR侧输出端的合成气摩尔流量达到7464 kmol h〜(-1)。

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