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首页> 外文期刊>ChemSusChem >Catalytic Partial Oxidation Coupled with Membrane Purification to Improve Resource and Energy Efficiency in Syngas Production
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Catalytic Partial Oxidation Coupled with Membrane Purification to Improve Resource and Energy Efficiency in Syngas Production

机译:催化部分氧化与膜净化相结合,以提高合成气生产中资源和能源效率

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Catalytic partial oxidation coupled with membrane purification is a new process scheme to improve resource and energy efficiency in a well-established and large scale-process like syngas production. Experimentation in a semi industrial-scale unit (20Nm(3)h(-1) production) shows that a novel syngas production scheme based on a pre-reforming stage followed by a membrane for hydrogen separation, a catalytic partial oxidation step, and a further step of syngas purification by membrane allows the oxygen-to-carbon ratio to be decreased while maintaining levels of feed conversion. For a total feed conversion of 40%, for example, the integrated novel architecture reduces oxygen consumption by over 50%, with thus a corresponding improvement in resource efficiency and an improved energy efficiency and economics, these factors largely depending on the air separation stage used to produce pure oxygen.
机译:催化部分氧化与膜净化相结合,是一种新的工艺方案,以提高资源和能源效率,以改善合成气生产的良好和大规模的规模。 半工业规模单位的实验(20nm(3)H(-1)制作)表明,基于预重整阶段的新型合成气生产方案,然后是用于氢分离的膜,催化部分氧化步骤和a 通过膜的合成气纯化的进一步步骤允许氧 - 碳比在保持进料转化水平的同时降低。 例如,对于40%的总饲料转换,例如,综合的新颖架构将氧气消耗降低超过50%,因此资源效率和改善的能源效率和经济学的改善,这些因素在很大程度上取决于所用的空气分离阶段 生产纯氧。

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