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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Para-selective methylation of toluene with methanol over nano-sized ZSM-5 catalysts: Synergistic effects of surface modifications with SiO2, P2O5 and MgO
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Para-selective methylation of toluene with methanol over nano-sized ZSM-5 catalysts: Synergistic effects of surface modifications with SiO2, P2O5 and MgO

机译:在纳米级ZSM-5催化剂上用甲醇对甲苯进行的部分选择性甲基化:SiO2,P2O5和MgO表面改性的协同效应

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The nano-sized ZSM-5 catalysts were modified by surface coating with SiO2, P2O5, MgO and their combinations; the catalytic properties were investigated in the shape-selective methylation of toluene with methanol. The catalysts were characterized by XRD, XRF, N-2 adsorption-desorption, temperature programmed desorption of ammonia (NH3-TPD), Fourier-transform infrared spectra of adsorbed pyridine/2,6-di-tert-butylpyridine, and adsorption of n-hexane/cyclohexane. The passivation of Lewis acid sites occurs prior to that of the Bronsted acid sites over ZSM-5 modified by SiO2, while P2O5 or MgO preferentially neutralizes the Bronsted acid sites of ZSM-5. The deposition of MgO is more efficient in passivating the acid sites and narrowing the pore openings, compared to SiO2 or P2O5 modification with the same oxide content (<9 wt%). The single modification could not completely passivate the external surface acid sites and simultaneously narrow the pore openings to a proper extent; so the selectivity to para-xylene does not exceed 90% even at the highest oxide loading. The multiple modification by SiO2, P2O5 and MgO, with a suitable sequence can efficiently eliminate external surface acid sites, and simultaneously narrow the pore openings, which led to a higher para-selectivity (similar to 98%). The combined modification with SiO2, P2O5 and MgO in a proper sequence can lead to a synergistic effect for tailoring the acid property and pore mouth of the catalyst, thus enhancing the para-selectivity to similar to 98% and improving catalytic stability, as demonstrated by flow test for 1000 h on stream. (C) 2014 Elsevier Inc. All rights reserved.
机译:纳米ZSM-5催化剂通过用SiO2,P2O5,MgO及其组合进行表面涂层改性;在甲苯与甲醇的选择性甲基化反应中研究了催化性能。通过XRD,XRF,N-2吸附-脱附,氨程序升温脱附(NH3-TPD),吸附吡啶/ 2,6-二叔丁基吡啶的傅里叶变换红外光谱以及对n的吸附进行表征-己烷/环己烷。在由SiO2改性的ZSM-5上,路易斯酸位的钝化发生在布朗斯台德酸位的钝化之前,而P2O5或MgO优先中和ZSM-5的布朗斯台德酸位。与具有相同氧化物含量(<9 wt%)的SiO2或P2O5改性相比,MgO的沉积在钝化酸位和缩小孔开口方面更有效。单一修饰不能完全钝化外表面的酸位,而不能同时适当地缩小孔的开口。因此,即使在最高的氧化物负载量下,对二甲苯的选择性也不会超过90%。 SiO2,P2O5和MgO的适当顺序的多重修饰可以有效地消除外表面酸位,同时缩小孔的开口,从而导致较高的对位选择性(约98%)。以适当的顺序与SiO2,P2O5和MgO组合进行修饰可以产生协同作用,以调整催化剂的酸性质和孔口,从而将对位选择性提高至接近98%,并改善了催化稳定性,进行1000小时的流量测试。 (C)2014 Elsevier Inc.保留所有权利。

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