Efficient Methanol Dehydration to DME and Light Hydrocarbons by Submicrometric ZrO2-ZSM-5 Fibrillar Catalysts with a Shell-Like Structure

J. Palomo, M. A. Rodríguez-Cano, José Berruezo-García, J. Rodríguez-Mirasol, T. Cordero
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引用次数: 10

Abstract

Zeolites are widely used in many applications, such as catalysis and adsorption processes. The use of these materials in a nanometric size would be of great interest for these applications, due to the better performance they could exhibit in terms of avoiding intraparticle mass and heat transfer limitations. However, this small particle size results in high pressure drops in adsorption columns and fixed-bed reactors, making these materials non-applicable directly in the nanometric size. In this work, ZrO 2 fibers with a mean size of 275 nm and the presence of small well-defined ZSM-5 zeolite aggregates of 550 nm in size around the ZrO 2 submicrometric fibers, in the form of a shell-like structure, have been prepared by electrospinning technique, which resulted very active for the synthesis of DME and light olefins via methanol dehydration. The submicrometric fibrillar catalysts, without any further modification, could be easily structured inside a fixed-bed reactor, which worked very efficiently in terms of heat and mass transfer, avoiding, at the same time, the usual pressure drops problems of fixed-bed reactors working with catalyst particles of submicrometric size. Methanol conversion and selectivity to DME and light hydrocarbons could be finely controlled, for a given set reaction conditions, by tuning the zeolite loading in the structured catalyst. Apparent kinetic parameters for the selective methanol dehydration to DME were calculated assuming a reversible second order rate expression and an activation energy of 75 kJ/mol was obtained.
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壳状结构的亚微米ZrO2-ZSM-5纤维状催化剂催化甲醇脱水制备二甲醚和轻烃
沸石在催化和吸附过程中有着广泛的应用。这些材料在纳米尺度上的使用将对这些应用产生极大的兴趣,因为它们在避免颗粒内质量和传热限制方面可以表现出更好的性能。然而,这种小颗粒尺寸导致吸附柱和固定床反应器中的高压降,使这些材料不能直接应用于纳米尺寸。本研究采用静电纺丝技术制备了平均尺寸为275 nm的ZrO - 2纤维,并在ZrO - 2亚微米纤维周围以壳状结构的ZSM-5小沸石聚集体存在,其大小为550 nm,具有良好的定义,对甲醇脱水合成二甲醚和轻烯烃具有很强的活性。这种亚微米级的纤维催化剂,无需任何进一步的修改,可以很容易地在固定床反应器中进行结构设计,这在传热和传质方面非常有效,同时避免了固定床反应器处理亚微米级催化剂颗粒时常见的压降问题。在给定的反应条件下,通过调整结构催化剂中沸石的负载,可以很好地控制甲醇的转化率和二甲醚和轻烃的选择性。采用可逆二阶速率表达式计算了甲醇选择性脱水制二甲醚的表观动力学参数,得到活化能为75 kJ/mol。
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