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Effect of thermal and oxidative treatments of activated carbon on its surface structure and suitability as a support for barium-promoted ruthenium in ammonia synthesis catalysts

机译:活性炭的热处理和氧化处理对其表面结构的影响及作为钡促进钌在氨合成催化剂中负载的适用性

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摘要

The effect of heat-treating a typical activated carbon at 1600-2500 degreesC on its structural and textural properties was investigated by gas sorption and X-ray diffraction. Particular attention was paid to the recovery of the surface area and porosity of thermally treated carbons by means of oxidation treatments. It was found that the thermal modification of activated carbon could eliminate carbon impurities, bring about different degrees of graphitization, and improve the resistance of the carbon support to undergo methanation under ammonia synthesis conditions, but the surface area and porosity decreased dramatically. Oxidative treatment partially recovered the surface area and porosity. The higher the thermal treatment temperature, the greater the stability of the carbon support, and the more difficult the recovery of the surface area and porosity becomes. A series of unpromoted ruthenium/carbon catalysts showed that the highly developed texture of the carbon support resulted in a significant increase in Ru dispersion. The ammonia synthesis activity of a Ba-promoted Ru catalyst was greatly improved by using activated carbon C1900ox as a support, which was heated at 1900 degreesC in an inert atmosphere and then subjected to oxidation treatment. (C) 2002 Elsevier Science Ltd. All rights reserved. References: 26
机译:采用气体吸附和X射线衍射研究了典型活性炭在1600-2500°C下热处理对其结构和织构性能的影响。特别注意通过氧化处理恢复热处理碳的表面积和孔隙率。研究发现,活性炭的热改性可以消除碳杂质,带来不同程度的石墨化,提高碳载体在氨合成条件下进行甲烷化的抵抗力,但比表面积和孔隙率显著降低。氧化处理部分恢复了表面积和孔隙率。热处理温度越高,碳载体的稳定性越大,表面积和孔隙率的恢复就越困难。一系列未促进的钌/碳催化剂表明,碳载体高度发达的质构导致Ru分散体显著增加。以活性炭C1900ox为载体,在惰性气氛下加热1900°C,再进行氧化处理,大大提高了Ba促进Ru催化剂的氨合成活性。(C) 2002 Elsevier Science Ltd.保留所有权利。[参考文献: 26]

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