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Development and characterization of a microfiltration membrane catalyst containing sulfonated polystyrene grafts

机译:含磺化聚苯乙烯接枝的微滤膜催化剂的开发与表征

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Polymeric catalytic membrane reactors (CMRs) containing sulfonated polystyrene grafts can serve as an alternative to traditional strong acid catalysts such as sulfuric acid and strong acid ion-exchange resins (IERs) for esterification and alkylation reactions. This material offers advantages over conventional catalysts in terms of corrosivity, attrition, pressure drop, mass transfer limitations, and catalyst separation. The membrane reactors are functionalized membranes created by cationic polymerization of styrene in the pores of a porous matrix of polyether-sulfone (PES). Sulfonation of the formed polystyrene grafts with sulfuric acid creates easily accessible sulfonic acid groups (similar to 2 meq/g) for catalysis. Diffusional limitations encountered in ion-exchange resins are minimized because transport through the membrane pore takes place by convection. Consequently, the membrane activation is accomplished with lower concentration acid. The activated membrane shows no loss of functionalized polymer during activation, demonstrating excellent material stability. Finally, the catalytic activity was verified for a simple esterification reaction between acetic acid and ethanol. (c) 2004 Elsevier B.V. All rights reserved.
机译:包含磺化聚苯乙烯接枝的聚合物催化膜反应器(CMR)可以替代传统的强酸催化剂,例如硫酸和用于酯化和烷基化反应的强酸离子交换树脂(IERs)。该材料在腐蚀性,磨损,压降,传质限制和催化剂分离方面比常规催化剂更具优势。膜反应器是功能化的膜,它是通过在聚醚砜(PES)多孔基质的孔中苯乙烯的阳离子聚合而生成的。用硫酸对形成的聚苯乙烯接枝进行磺化反应,可产生易于接近的磺酸基团(约2 meq / g)进行催化。离子交换树脂遇到的扩散限制被最小化,因为穿过膜孔的运输是通过对流进行的。因此,用较低浓度的酸完成膜活化。活化膜在活化过程中未显示官能化聚合物的损失,表明材料具有出色的稳定性。最后,验证了乙酸和乙醇之间简单酯化反应的催化活性。 (c)2004 Elsevier B.V.保留所有权利。

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