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Effect of 3D open-pores on the dehydration of n-butanol to di-n-butyl ether (DNBE) over a supported heteropolyacid catalyst

机译:3D开孔对负载型杂多酸催化剂上正丁醇脱水成二正丁醚(DNBE)的影响

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摘要

The production of di-n-butyl-ether (DNBE), for use as a blending agent in diesel fuel, is very attractive because the reactant (n-butanol) can be readily produced by the fermentation of bio-derivatives. The dehydration of n-butanol is known to show diffusion-limited characteristics on porous catalysts, such as zeolites or mesoporous supported catalysts. In order to overcome this limitation, herein, we synthesized silica spheres (DSS) with three-dimensional (3D) open pores by a hydrothermal reaction for use as a catalyst for the dehydration of n-butanol. In addition, supported heteropolyacid (PW) catalysts were also prepared on various porous silicas, DSS, SBA-15 and microporous silica (mi-S), to investigate the effect of 3D pore structures on the conversion of n-butanol to DNBE against 2D mesoporous and micro-porous materials by quantitative calculation. PW/DSS showed the best performance among the catalysts at various temperatures (453, 473, and 493 K). The extent of catalytic performance enhancement was quantified by calculating the effectiveness factor (η) based on kinetics data. The η values for PW/DSS, PW/SBA, and PW/mi-S were determined to be 0.83, 0.63 and 0.52, respectively.
机译:在柴油中用作混合剂的二正丁基醚(DNBE)的生产非常吸引人,因为反应物(正丁醇)可以通过生物衍生物的发酵而容易地生产。已知正丁醇的脱水在多孔催化剂如沸石或中孔负载型催化剂上显示出扩散受限的特征。为了克服此限制,本文中,我们通过水热反应合成了具有三维(3D)开孔的二氧化硅球(DSS),用作正丁醇脱水的催化剂。此外,还在各种多孔二氧化硅,DSS,SBA-15和微孔二氧化硅(mi-S)上制备了负载型杂多酸(PW)催化剂,以研究3D孔结构对正丁醇转化为DNBE的2D转化率的影响。中孔和微孔材料通过定量计算。 PW / DSS在各种温度(453、473和493 K)下均表现出最佳的性能。通过基于动力学数据计算效率因子(η)来量化催化性能增强的程度。 PW / DSS,PW / SBA和PW / mi-S的η值分别确定为0.83、0.63和0.52。

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