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首页> 外文期刊>Fuel Processing Technology >Testing of a highly reactive impregnated Fe2O3/Al2O3 oxygen carrier for a SR-CLC system in a continuous CLC unit
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Testing of a highly reactive impregnated Fe2O3/Al2O3 oxygen carrier for a SR-CLC system in a continuous CLC unit

机译:在连续CLC单元中测试SR-CLC系统的高反应性浸渍Fe2O3 / Al2O3氧气载体

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摘要

A Fe-based oxygen carrier (OC) was evaluated for H2 production with CO2 capture by coupling steam reforming of methane and chemical-looping combustion (CLC) processes (SR-CLC). The CLC system supplies the heat necessary to carry out the endothermic reformed reactions, using the PSA off-gas as fuel. The Fe-based OC was made by incipient hot impregnation using Al2O3 as support and was first characterized by TGA and batch fluidized bed reactor in order to determine its reactivity and its fluidization behavior. The OC behavior in a continuous CLC unit was evaluated using a simulated PSA off-gas and methane as fuels. During 46 h of continuous operation, the OC never showed agglomeration or carbon deposition, and the attrition was moderate. It was found that the fuel composition has low effect on the combustion efficiency and full conversion can be obtained at 1153 K with an oxygen carrier-to-fuel ratio 1.5. The solids inventory needed to fully convert methane or PSA off-gas was lower than those found with other Fe-based materials. These results were due to the positive effect of the alumina on the OC reactivity. Therefore, the Fe2O3/Al2O3 OC prepared by impregnation is suitable for burning a PSA off-gas in the SR-CLC process.
机译:通过将甲烷的蒸汽重整与化学循环燃烧(CLC)过程(SR-CLC)耦合,评估了基于Fe的氧气载体(OC)产生的H2和捕获的CO2。 CLC系统使用PSA废气作为燃料提供进行吸热重整反应所需的热量。 Fe基OC是通过以Al2O3为载体的初始热浸渍法制备的,首先通过TGA和间歇流化床反应器进行表征,以确定其反应性和流化行为。使用模拟的PSA废气和甲烷作为燃料,评估了连续CLC单元中的OC行为。在连续运行的46小时内,OC从未显示出团聚或碳沉积,并且磨损程度中等。已发现该燃料组合物对燃烧效率的影响较小,并且在氧气载体与燃料的比率为1.5的情况下,在1153 K下可以获得完全转化。完全转化甲烷或PSA废气所需的固体存量低于其他铁基材料的存量。这些结果归因于氧化铝对OC反应性的积极影响。因此,通过浸渍制备的Fe2O3 / Al2O3 OC适用于在SR-CLC工艺中燃烧PSA废气。

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