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CATALYTIC OXIDATION OF JET FUEL SURROGATES IN A MESO-SCALE COMBUSTOR

机译:中型燃烧室中喷气燃料替代物的催化氧化

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Oxidation behavior of dodecane and two mixtures of dodecane and m-xylene (90/10 wt. % and 80/20 wt. %) over an Rh catalyst in a meso-scale heat recirculating combustor was examined to isolate the effect of aromatic content on performance. The fuel conversion, product speciation and reaction kinetics were calculated, and the global combustion behavior observed. The results showed that increasing the amount of m-xylene in the fuel increased the fuel conversion from 85% (pure dodecane) to 92% (90/10) and further to 98% (80/20). The presence of xylene also significantly increased CO_2/H_2O selectivity and de-creased CO/H_2 selectivity. Global activation energy increased linearly with increase in xylene content, supporting that addition of aromatic species to fuel lowers the overall reactivity. The non-catalytic reaction was also simulated using Chemkin software to determine the effect of the Rh catalyst on the combustor performance. The results revealed that the catalyst promotes total oxidation over partial oxidation, and lowers the global activation energy by up to 70%.
机译:研究了十二烷和十二烷与间二甲苯的两种混合物(90/10 wt。%和80/20 wt。%)在中等规模热循环燃烧器中在Rh催化剂上的氧化行为,以分离芳烃含量对表现。计算了燃料转化率,产物形态和反应动力学,并观察了整体燃烧行为。结果表明,增加燃料中间二甲苯的量可使燃料转化率从85%(纯十二烷)提高到92%(90/10),再提高到98%(80/20)。二甲苯的存在还显着提高了CO_2 / H_2O的选择性和降低的CO / H_2的选择性。随着二甲苯含量的增加,整体活化能呈线性增加,这表明向燃料中添加芳香族物质会降低整体反应性。还使用Chemkin软件模拟了非催化反应,以确定Rh催化剂对燃烧室性能的影响。结果表明,该催化剂比部分氧化促进了总氧化,并降低了高达70%的整体活化能。

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