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Autothermal reforming of JP8 on a Pt/Rh catalyst: Catalyst durability studies and effects of sulfur

机译:Pt / Rh催化剂上JP8的自热重整:催化剂的耐久性研究和硫的影响

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Autothermal reforming (ATR) of commercial grade JP8 was performed on a Pt/Rh catalyst deposited on a monolith. This study investigated catalyst performance under three test conditions: (i) 120 startup and shutdown cycles, (ii) 80h of continuous operation with sulfur-free fuel, and (iii) 370h of testing with JP8 containing 125ppm of sulfur. Axial reactor temperature profiles and gas composition data showed that startup and shutdown cycling had no impact on catalyst performance. When durability testing was done with fuel containing 125 ppm of sulfur, the catalyst deactivated initially, which was reflected by a decrease in H_2 concentration and decrease in fuel conversion. However, after 250 h of operation the activity stabilized at 66% fuel conversion and product concentrations were constant for the remaining 120 h of testing. The presence of sulfur resulted in higher CO selectivity, lower H_2 concentrations, and lower fuel conversions compared to data with sulfur-free fuel. The data suggests that the presence of sulfur primarily affects steam reforming reactions, and CO oxidation. Regeneration was attempted with air and with fuel-lean combustion but initial H_2 yields and carbon selectivity were not achieved.
机译:在沉积在整料上的Pt / Rh催化剂上进行了商品级JP8的自热重整(ATR)。这项研究调查了三种测试条件下的催化剂性能:(i)120个启动和关闭循环,(ii)使用无硫燃料连续运行80h,以及(iii)使用含125ppm硫的JP8进行370h测试。轴向反应器温度曲线和气体组成数据表明启动和关闭循环对催化剂性能没有影响。当使用含硫量为125 ppm的燃料进行耐久性测试时,催化剂首先失活,这通过H_2浓度的降低和燃料转化率的降低反映出来。但是,在运行250小时后,活性稳定在66%的燃料转化率上,并且在剩余的120小时测试中,产品浓度保持恒定。与无硫燃料的数据相比,硫的存在导致更高的CO选择性,更低的H_2浓度和更低的燃料转化率。数据表明,硫的存在主要影响蒸汽重整反应和CO氧化。尝试用空气和贫燃料燃烧进行再生,但未达到初始H_2收率和碳选择性。

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