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Potassium-catalyzed steam gasification of petroleum coke for H2 production: Reactivity, selectivity and gas release

机译:用于生产H2的石油焦的钾催化蒸汽气化:反应性,选择性和气体释放

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Potassium-catalyzed steam gasification of petroleum coke for H2 production .was performed using a laboratory fixed-bed reaction system with an on-line quadruple mass spectrometer. The gasification reactivity, gasification selectivity and gas release for the catalytic gasification were investigated, compared with the non-catalytic gasification. The catalytic gasification could not only effectively promote these reactions (the water-carbon reaction, the water-gas shift reaction and the methane-steam reforming reaction), but also elevate greatly the gasification selectivity towards CO2 (a high gasification selectivity towards CO2 meant a high H2 production). A quantitative calculation method for the gasification selectivity towards CO and CO2 was proposed to further understand the catalytic behaviors of catalysts. In the case of catalytic gasification, the gasification temperature had opposite effects on the gasification reactivity and the gasification selectivity towards CO2, suggesting that there existed an optimum gasification temperature (about 750 °C) for H2 production from the potassium-catalyzed steam gasification of petroleum coke. In addition, petroleum coke could be feasibly utilized as the feedstocks for the catalytic steam gasification to produce gases with high H2 (55.5-60.4%) and virtually no CH4 (below 0.1%).
机译:使用带有在线四重质谱仪的实验室固定床反应系统,对用于生产H2的石油焦进行钾催化的蒸汽气化。与非催化气化相比,研究了催化气化的气化反应性,气化选择性和气体释放。催化气化不仅可以有效地促进这些反应(水碳反应,水煤气变换反应和甲烷蒸汽重整反应),而且还可以大大提高对二氧化碳的气化选择性(对二氧化碳的高气化选择性意味着高氢气产量)。为了进一步理解催化剂的催化行为,提出了一种针对CO和CO2的气化选择性的定量计算方法。在催化气化的情况下,气化温度对气化反应性和对CO2的气化选择性具有相反的影响,这表明存在一个最佳的气化温度(约750°C),用于由钾催化的石油蒸汽气化生产H2。可乐。另外,可以将石油焦炭用作催化蒸汽气化的原料,以产生具有高H 2(55.5-60.4%)和几乎没有CH 4(低于0.1%)的气体。

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