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Dry reforming of coke oven gases over activated carbon to produce syngas for methanol synthesis

机译:在活性炭上对焦炉气进行干重整以生产用于甲醇合成的合成气

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摘要

[EN] The dry reforming of coke oven gases (COG) over an activated carbon used as catalyst has been studied in order to produce a syngas suitable for methanol synthesis. The primary aim of this work was to study the influence of the high amount of hydrogen present in the COG on the process of dry reforming, as well as the influence of other operation conditions, such us temperature and volumetric hourly space velocity (VHSV). It was found that the reverse water gas shift (RWGS) reaction takes place due to the hydrogen present in the COG, and that its influence on the process increases as the temperature decreases. This situation may give rise to the consumption of the hydrogen present in the COG, and the consequent formation of a syngas which is inappropriate for the synthesis of methanol. This reaction can be avoided by working at high temperatures (about 1000 °C) in order to produce a syngas that is suitable for methanol synthesis. It was also found that the RWGS reaction is favoured by an increase in the VHSV. In addition, the active carbon FY5 was proven to be an adequate catalyst for the production of syngas from COG.
机译:[EN]已经研究了焦炭炉气(COG)在用作催化剂的活性炭上的干重整,以生产适合甲醇合成的合成气。这项工作的主要目的是研究COG中大量氢对干重整过程的影响,以及其他操作条件的影响,例如温度和体积时空速(VHSV)。已经发现,由于COG中存在氢,因此发生了反向水煤气变换(RWGS)反应,并且随着温度的降低,其对工艺的影响也会增加。这种情况可能导致消耗COG中存在的氢气,并因此形成了不适合合成甲醇的合成气。为了产生适合甲醇合成的合成气,可以通过在高温(约1000°C)下进行操作来避免该反应。还发现,VGSV的增加有利于RWGS反应。此外,已证明活性炭FY5是从COG生产合成气的合适催化剂。

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