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THERMALLY MODIFIED ACTIVE CARBON AS A SUPPORT FOR CATALYSTS FOR NH3 SYNTHESIS

机译:热改性活性炭作为NH 3合成催化剂的载体

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The effect of thermal treatment of a typical active carbon at 1300 degrees C and 1900 degrees C on its structural properties was investigated. It has been found that only a high-temperature heating (1900 degrees C) produced substantial changes in the structure of the carbon used: a disappearance of a considerable part of open micropores and formation of a turbostratic structure. The prepared materials were used as a support in catalysts for NH3 synthesis. The precursor of the active phase was Fe(NO3)(3) . 9H(2)O. The iron nitrate deposited on the raw amorphous carbon decomposes to finely dispersed, hardly reducible iron oxides on heating to 470 degrees C in a H-2+N-2 mixture. Even if reduced to more than 33%, iron is inactive in NH3 synthesis (400-470 degrees C, p=10 MPa). When deposited on the turbostratic, low-surface area carbon, iron forms, however, well developed crystallites (similar to 60 nm), and is active in ammonia synthesis. Potassium activates strongly the surface of Fe, and, in the case of the amorphous support, it stimulates the reduction of iron oxides. [References: 33]
机译:研究了典型的活性炭在1300摄氏度和1900摄氏度下的热处理对其结构性能的影响。已经发现,只有高温加热(1900摄氏度)才使所用碳的结构发生实质性变化:大量微孔的消失和涡轮层结构的形成。所制备的材料用作NH 3合成催化剂中的载体。活性相的前体是Fe(NO3)(3)。 9H(2)O。沉积在粗无定形碳上的硝酸铁在H-2 + N-2混合物中加热到470摄氏度时分解为细分散的,几乎不可还原的氧化铁。即使减少到超过33%,铁在NH3合成(400-470摄氏度,p = 10 MPa)中也没有活性。但是,当沉积在涡轮层低表面积碳上时,铁会形成发达的微晶(类似于60 nm),并且在氨合成中具有活性。钾会强烈地活化铁的表面,在无定形载体的情况下,钾会刺激氧化铁的还原。 [参考:33]

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