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首页> 外文期刊>International journal of hydrogen energy >Development of a stand-alone steam methane reformer for on-site hydrogen production
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Development of a stand-alone steam methane reformer for on-site hydrogen production

机译:开发用于现场制氢的独立蒸汽甲烷重整器

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A small, stationary reformer designed as a stand-alone and self-sustaining type was developed for on-site hydrogen (H-2) production. We created a compact reformer to produce H-2 at a rate of 1 Nm(3)/h using the previously reported reaction kinetics of steam methane reforming (SMR). Both catalysts for the compact reformer - i.e., 15 wt% and 20 wt% Ni/gamma-Al2O3 - showed good activity, with CH4 conversion exceeding 90% at 655 degrees C and a contact time of 3.0 gcath/mol, which were considered critical thresholds in the development of a small, compact stationary reformer. At an H-2 production rate of 1 Nm(3)/h, the catalyst amount was calculated to be 167.8 g and the reformer length required to charge the catalyst was 613 mm, with a diameter of 1 inch. The CH4 conversion and H-2 production rates achieved with the compact reformer using the 20 wt% Ni/gamma-Al2O3 catalyst at 738 degrees C were 97.9% and 1.22 Nm(3)/h, respectively. Furthermore, a heat -exchanger type reformer was developed to efficiently carry out the highly endothermic SMR reaction for on-site H-2 production. This reformer comprised a tube side (in which the catalysts were charged and the SMR reaction took place by feeding the reactants) and a shell side (in which the heat for the endothermic reaction was supplied by CH4 combustion). Reforming activities were evaluated using the active 20 wt% Ni//gamma-Al2O3 catalyst, depending on the reactants' gas hourly space velocity (GHSV). The H-2 production rate increased as the GHSV increased. Finally, the reformer produced a CH4 conversion of 98.0% and an H-2 production rate of 1.97 Nm(3)/h at 745 degrees C, as well as a high reactants' GHSV of 10,000 Therefore, the heat exchanger type reformer proved to be an effective system for conducting the highly endothermic SMR reaction with a high reactants' GHSV to yield a high rate of H-2 production. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:开发了一种小型的固定式重整器,设计成独立的自持式重整器,用于现场制氢(H-2)。我们使用先前报道的蒸汽甲烷重整(SMR)反应动力学,创建了一个紧凑的重整炉,以1 Nm(3)/ h的速率生产H-2。紧凑型重整器的两种催化剂-即15 wt%和20 wt%Ni /γ-Al2O3-均显示出良好的活性,在655摄氏度下CH4转化率超过90%,接触时间为3.0 gcath / mol,这被认为是至关重要的小型紧凑型固定式重整器的开发门槛。在H-2生产率为1 Nm(3)/ h的情况下,计算的催化剂量为167.8 g,装入催化剂所需的重整器长度为613 mm,直径为1英寸。使用20 wt%Ni /γ-Al2O3催化剂在738摄氏度下使用紧凑型重整器实现的CH4转化率和H-2生产率分别为97.9%和1.22 Nm(3)/ h。此外,开发了热交换器型重整器以有效地进行高度吸热的SMR反应,以进行现场H-2生产。该重整器包括管侧(其中加入催化剂并且通过进料反应物进行SMR反应)和壳侧(其中通过CH 4燃烧提供吸热反应的热量)。根据反应物的气体时空速度(GHSV),使用活性20 wt%Ni //γ-Al2O3催化剂评估重整活性。 H-2生产率随着GHSV的增加而增加。最终,重整炉在745摄氏度下产生了98.0%的CH4转化率和1.97 Nm(3)/ h的H-2生产率,以及10,000的高反应物GHSV。是一种有效的系统,可与高反应物的GHSV进行高吸热SMR反应,以产生高速率的H-2。 (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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