首页> 外文期刊>AIChE Journal >High-Temperature Kinetics of the Homogeneous Reverse Water-Gas Shift Reaction
【24h】

High-Temperature Kinetics of the Homogeneous Reverse Water-Gas Shift Reaction

机译:均相逆水煤气变换反应的高温动力学

获取原文
获取原文并翻译 | 示例
           

摘要

The high-temperature rate of reaction of the homogeneous,reverse water-gas shift reaction(rWGSR)has been evaluated in quartz reactors with rapid feed preheating under both low-and high-pressure conditions.The form of the power-law rate expression was consistent with the Bradford mechanism.The Arrhenius expressions for the reaction rate constant,corresponding to the empty reactor,were in very good agreement with the low-pressure results of Graven and Long,but yielded rate constants roughly four times greater than those obtained in our packed reactor and those reported by Kochubei and Moin and by Tingey.Reactor geometry was not responsible for these differences because computational fluid dynamics simulations revealed similar residence time distributions and comparable conversions when the same kinetic expression was used to model the rWGSR in each reactor.Most likely,the empty NETL reactor and the Graven and Long reactor did not attain an invariant value of the concentration of the chain carrier(H)at low reaction times,which led to an over estimation of the rate constant.Conversions attained in an Inconel 600 reactor operating at comparable conditions were approximately two orders of magnitude greater than those realized in the quartz reactor.This dramatic increase in conversion suggests that the Inconef' 600 surfaces,which were depleted of nickel during the reaction,catalyzed the rWGSR.
机译:在低压和高压条件下,在具有快速进料预热的石英反应器中,对均相,反向水煤气变换反应(rWGSR)的高温反应速率进行了评估。幂律速率表达式的形式为对应于空反应器的反应速率常数的Arrhenius表达式与Graven和Long的低压结果非常吻合,但得出的速率常数大约是我们的所得常数。填充的反应堆以及Kochubei和Moin以及Tingey报道的反应堆不是这些差异的原因,因为当在每个反应堆中使用相同的动力学表达式对rWGSR进行建模时,计算流体动力学模拟显示出相似的停留时间分布和可比的转化率。空的NETL反应堆和Graven and Long反应堆很可能没有获得柴氏浓度的不变值在低反应时间下n载流子(H)导致速率常数的过高估计。在可比条件下运行的Inconel 600反应器中获得的转化率比石英反应器中实现的转化率高约两个数量级。转化表明,Inconef'600表面在反应过程中耗尽了镍,从而催化了rWGSR。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号