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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >EFFECT OF PRELIMINARY HEATING ON THE ACTIVATION OF MODEL IRON CATALYST FOR AMMONIA SYNTHESIS .1. MOSSBAUER STUDIES OF THE CATALYST REDUCTION
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EFFECT OF PRELIMINARY HEATING ON THE ACTIVATION OF MODEL IRON CATALYST FOR AMMONIA SYNTHESIS .1. MOSSBAUER STUDIES OF THE CATALYST REDUCTION

机译:初步加热对氨合成模型铁催化剂活化的影响1。催化剂还原的MOSSBAUER研究

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The oxidized form of a model, fused iron catalyst for ammonia synthesis, containing large amounts of wustite (ca. 40 wt.-%), was activated by reduction. The reduction of catalyst samples with different thermal history and different grain size was continuously monitored by thermogravimetry as well as periodically by Mossbauer spectrometry. Prior to the reduction, the samples were annealed in nitrogen atmosphere, The longer the time of primary annealing was, the faster was the reduction process. Some conclusions could be drawn about the nature of the acceleration - the induction period seemed to be shorter, whereas the reduction mechanism seemed to remain unchanged, The wustite phase disproportionates during the initial annealing, forming metallic iron and magnetite as the final products. Magnetite originating from the decomposition of wustite showed a faster reduction rate than the primary magnetite. [References: 28]
机译:通过还原活化了用于氨合成的模型熔融铁催化剂的氧化形式,其包含大量的铁矾(约40重量%)。通过热重法连续监测具有不同热历史和不同晶粒尺寸的催化剂样品的还原,并通过莫斯鲍尔光谱仪定期监测。在还原之前,将样品在氮气气氛中退火。一次退火的时间越长,还原过程越快。关于加速的性质,可以得出一些结论-感应时间似乎较短,而还原机理似乎保持不变。在初始退火过程中,铁素体相失衡,最终形成金属铁和磁铁矿。源于钙铁矿分解的磁铁矿比主要磁铁矿具有更快的还原速度。 [参考:28]

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