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首页> 外文期刊>Catalysis Today >Selective ethanol synthesis via multi-step reactions from syngas: Ferrierite-based catalysts and fluidized-bed reactor application
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Selective ethanol synthesis via multi-step reactions from syngas: Ferrierite-based catalysts and fluidized-bed reactor application

机译:通过来自合成气的多步反应选择性乙醇合成:基于Ferrierate的催化剂和流化床反应器应用

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Selective ethanol synthesis from syngas through cascade multi-step reactions via methyl acetate (MA) intermediate route was investigated using a highly crystalline ferrierite (FER) zeolite and hybridized bifunctional Cu-ZnO-Al2O3/FER (CZA/FER). The extent of crystallinity of the FER zeolites played crucial roles for catalytic activities of syngas conversion to dimethyl ether (DME), DME carbonylation to MA and MA hydrogenation to ethanol. With an increase of crystallinity of FER, DME productivity by CO2 (or CO) hydrogenation was largely enhanced due to a fast dehydration rate of methanol to DME on the CZA/FER having a large surface area of metallic copper nanoparticles. The bifunctional CZA/FER was utilized to convert MA to ethanol up to the similar equilibrium yield of similar to 42 mol%. In addition, highly crystalline of FER@FER, which was synthesized by using a FER seed, showed a higher DME conversion to MA and stability due to the abundant presence of Bronsted acid sites with less defect sites. To verify the possible integration of two series cascade reactions such as direct syngas conversion to DME and its consecutive carbonylation to MA, the segregated double-layer formation in one bubbling fluidized-bed reactor was simulated. Two catalytic reaction regions with a light and dense-phase at similar reaction conditions were completely segregated at optimal linear velocity ranges (minimum fluidizing velocity, U-mf) by using two different catalyst particle sizes having an average size of 112.5 and 82.5 mu m in a bottom and upper reaction zone, respectively.
机译:使用高晶的无晶沸石(FER)沸石和杂交的双官能Cu-ZnO-Al2O3 / FER(CZA / FER),研究了通过甲基乙酸甲酯(MA)中间途径通过级联的多步反应的选择性乙醇通过梯级的多步反应合成。沸石的结晶程度起到合成气转化为二甲醚(DME)的催化活性的关键作用,DME羰基化与MA和MA氢化至乙醇。随着FER的结晶度的增加,由于甲醇的快速脱水速率在具有大表面积的金属铜纳米粒子的CZA / FER上的甲醇至DME的快速脱水速率,DME通过CO 2(或CO)氢化的生产率大大提高。双官能CZA / FER用于将MA转化为乙醇,直至类似于42摩尔%的相似平衡产率。此外,通过使用FER种子合成的FER @ FER的高度结晶,由于伪造酸位点具有较少的缺陷位点,因此较高的DME转化为MA和稳定性。为了验证两个系列级联反应的可能集成,例如直接合成气转化为DME及其连续的羰基化到MA,模拟了一种鼓泡流化床反应器中的隔离的双层形成。通过使用平均尺寸为112.5和82.5μm的两种不同的催化剂粒度,在最佳的线性速度范围(最小流化速度,U-Mf),在最佳的线速范围(最小流化速度,U-Mf),在相似的反应条件下进行两种催化反应区。分别为底部和上反应区。

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