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Internal and external mass transfer effects for commercial acid resin catalysts in TAME synthesis

机译:TAME合成中商用酸性树脂催化剂的内部和外部传质效果

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To overcome the drawback of low catalytic performance of reactive packing in a catalytic distillation column, an apparatus comprising an all-V tray and fixed catalyst bed has been developed. In this study, the effects of internal and external mass transfer resistance on the tert-amyl methyl ether (TAME) synthesis catalyzed by acid resin catalysts were investigated to obtain the design criteria in the catalyst bed. Rate equations modified from the work of Rihko and Krause (1995) were used to calculate the reaction rate. The results indicated that the effect of internal mass transfer resistance on TAME formation was insignificant, whereas its effect on TAME decomposition was very significant. At a temperature of 353 K, to achieve a 95% intrinsic rate of TAME formation, the diameter of the resin particles needed to be smaller than 0.9 mm, and the porosity larger than 0.4. Empirical correlation equations were used to calculate the external mass transfer coefficient, which was confirmed by test reactions performed in an isothermal tubular reactor. As suggested by the model calculation results, the external mass transfer resistance over resins could be neglected even if Reynolds number decreased to 0.04 under operation conditions that included a space velocity of 0.06 h(-1).
机译:为了克服催化蒸馏塔中反应性填料的催化性能低的缺点,已经开发了包括全V塔板和固定催化剂床的设备。在这项研究中,研究了内部和外部传质阻力对酸性树脂催化剂催化的叔戊基甲基醚(TAME)合成的影响,从而获得了催化剂床层的设计标准。根据Rihko和Krause(1995)的工作修改的速率方程式用于计算反应速率。结果表明,内部传质阻力对TAME形成的影响不显着,而对TAME分解的影响非常显着。在353 K的温度下,要实现95%的TAME形成本征率,树脂颗粒的直径必须小于0.9 mm,孔隙率大于0.4。经验相关方程用于计算外部传质系数,该系数已通过在等温管式反应器中进行的测试反应得到了证实。如模型计算结果所示,即使在空速为0.06 h(-1)的操作条件下,即使雷诺数降至0.04,也可以忽略树脂的外部传质阻力。

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