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Performance of catalytic reactors for the hydrogenation of CO_2 to hydrocarbons

机译:催化反应器的催化反应器对烃氢化的催化反应器

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Fluidized bed and slurry reactors were employed to increase the CO_2 conversion and desirable product selectivity in the direct hydrogenation of CO_2 to hydrocarbons over K-promoted iron catalysts, as it is beneficial for the removal of heat generated due to highly exothermic nature of the reaction. The iron catalysts (Fe-K/Al_2O_3 and Fe-Cu-Al-K) were characterized by BET surface area, CO_2 and H_2 chemisorption, temperature-programmed reduction (TPR), X-ray diffraction (XRD) and temperature-programmed hydrogenation (TPH) The results of TPR and TPH study clearly indicated that co-precipitated Fe-Cu-Al-K catalyst has much higher reducibility and catalytic activity of CO_2 hydrogenation at low temperature than Fe-K/Al_2O_3. The performance of fluidized bed or slurry reactors was superior to that of fixed bed reactor for the CO_2 hydrogenation over Fe-Cu-Al-K catalyst in terms of CO_2 conversion and hydrocarbon productivity. Moreover, light olefins and heavy hydrocarbons were selectively synthesized in fluidized bed and slurry reactors, respectively. The optimum operation conditions and the effects of operating variables on the CO_2 conversion and its product distribution in these catalytic reactors were also discussed.
机译:流化床和淤浆反应器中使用,以增加过K-促进的铁催化剂的CO_2转化率和期望的产物选择性在CO_2的直接氢化烃,因为它是由于反应的高度放热性质产生的排热是有利的。铁催化剂(FE-K / Al_2O_3的和Fe-Cu系的Al-K)的特征在于BET表面积,CO_2和H_2化学吸附,程序升温还原(TPR),X射线衍射(XRD)和程序升温氢化(TPH)和TPR TPH研究的结果清楚地表明,共沉淀的Fe-Cu系的Al-K催化剂具有高得多的还原性和在低温下比Fe-K / Al_2O_3的CO_2加氢的催化活性。流化床或淤浆反应器的性能优于固定床反应器用于CO_2转化率和烃生产率方面的CO_2氢化过的Fe-Cu系的Al-K催化剂。另外,轻质烯烃和重质烃类在流化床和淤浆反应器中选择性地合成,分别。在最佳的操作条件并在CO_2转化率和在这些催化反应器及其产物分布操作变量的影响进行了讨论。

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