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Investigation of Operating Parameters in Conjunction with Catalyst Deactivation of the Water-Gas Shift Reactor in a Fuel Cell System

机译:与燃料电池系统中水煤气变换反应器的催化剂失活相结合的运行参数研究

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The operating characteristic of a water-gas shift (WGS) reactor in a fuel cell system was investigated. Deactivation of the catalyst was identified in previous experiments during steady state and after startup/ shutdown, therefore reasons for the deactivation need to be investigated. Experiments on the system level revealed a correlation between deactivation and the fuel used. According to this correlation, a combination of a high amount of aromatic hydrocarbons in the fuel and a high boiling range had a more significant effect than a high amount of aromatics alone, followed by the single effect of a high boiling range. Furthermore, the presence of higher hydrocarbons from incomplete fuel conversion in the autothermal reformer (ATR) was associated with catalyst deactivation of the WGS reactor. To obtain a deeper understanding of the influence of higher hydrocarbons on catalyst activity, experiments were conducted with two commercial noble metal WGS catalysts using ideal and realistic reformate. Results under low-temperature-shift (LTS) conditions showed that both catalysts were only slightly influenced by the amount of higher hydrocarbons added in the steady state, as well as under shutdown conditions.
机译:研究了燃料电池系统中水煤气变换(WGS)反应堆的运行特性。在先前的实验中,在稳态期间以及启动/关闭后已确定了催化剂的失活,因此需要研究失活的原因。系统级的实验表明,停用和使用的燃料之间存在相关性。根据这种相关性,燃料中大量的芳烃和高沸程的组合比单独的大量芳烃具有更显着的效果,随后是高沸程的单一效果。此外,自热重整器(ATR)中燃料转化不完全导致高级烃的存在与WGS反应器的催化剂失活有关。为了更深入地了解高级烃对催化剂活性的影响,使用理想的和现实的重整产品对两种市售贵金属WGS催化剂进行了实验。在低温变换(LTS)条件下的结果表明,两种催化剂仅受稳态和停机条件下加入的高级烃数量的轻微影响。

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