首页> 外文期刊>Journal of Catalysis >A new approach to the modeling of deactivation in the conversion of methanol on zeolite catalysts
【24h】

A new approach to the modeling of deactivation in the conversion of methanol on zeolite catalysts

机译:分子筛催化剂上甲醇转化失活建模的新方法

获取原文
获取原文并翻译 | 示例
           

摘要

The deactivation of a zeolite catalyst in the conversion of methanol to hydrocarbons is described as a reduction of the effective amount of catalyst with time on stream. With the assumptions that the conversion of methanol is a first-order reaction, and that the loss of active catalyst is proportional to the conversion, an expression for the conversion with time on stream is obtained, which describes the experimental data well. This expression contains the rate constant, that characterizes the activity, and a deactivation coefficient that describes the deactivation behavior as parameters. It is shown that active catalysts show a more sudden decrease in conversion, and that the deactivation rate determines the time at which the decrease in conversion is observed. If the initial conversion is close to 100%, the lifetime to 50% conversion does not depend on the activity, and the deactivation coefficient is directly derived from the experimental data, by dividing the measured lifetime to 50% conversion by the applied contact time. The lifetime to all other conversion levels is dependent on both deactivation and activity, which implies that a catalyst lifetime to breakthrough of methanol does not scale with the deactivation rate. Likewise, it is shown that the conversion capacity is a good characterization of the deactivation, and this can be readily calculated as the product of the space velocity of methanol (WHSV) and the lifetime to 50% conversion. The amount of converted methanol at other conversion levels depends on the deactivation, the activity, and applied contact time (space velocity), and is therefore less appropriate to use as a characterization of the deactivation behavior.
机译:甲醇转化为烃类过程中沸石催化剂的失活被描述为催化剂有效量随生产时间的减少。假设甲醇的转化是一级反应,并且活性催化剂的损失与转化成正比,则可获得转化率随运行时间的表达式,很好地描述了实验数据。该表达式包含速率常数(表示活动的特征)和禁用系数,该系数将禁用行为描述为参数。已经表明,活性催化剂显示出更突然的转化率降低,并且失活速率决定了观察到转化率降低的时间。如果初始转化率接近100%,则寿命转化为50%的转化率与活性无关,并且通过将测得的寿命转化为50%的转化率除以施加的接触时间,可以直接从实验数据中得出失活系数。所有其他转化水平的寿命都取决于失活和活性,这意味着甲醇突破的催化剂寿命不会随失活速率而变化。同样地,显示出转化能力是减活的良好表征,并且可以容易地将其计算为甲醇的空速(WHSV)和50%转化寿命的乘积。在其他转化水平下转化的甲醇量取决于失活,活性和施加的接触时间(空速),因此不太适合用作失活行为的表征。

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