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首页> 外文期刊>Journal of the Brazilian Chemical Society >Optimization and Study of the Response Surface of Properties for the Synthesis of ZSM-5 Zeolites with Hierarchical Pore Structure Obtained by Desilication
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Optimization and Study of the Response Surface of Properties for the Synthesis of ZSM-5 Zeolites with Hierarchical Pore Structure Obtained by Desilication

机译:通过溶解获得的分层孔结构合成ZSM-5沸石的响应表面的优化研究

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Hierarchical ZSM-5 zeolites were prepared by alkali treatment (desilication) at two temperatures, two reaction times, and two NaOH concentrations. A 2 3 factorial design was used to study the effect of these variables on the crystallinity, microporosity, and mesoporosity of the zeolite due to the desilication treatment. The factorial design analysis showed that the temperature, reaction time and NaOH concentration and the second order interaction between temperature and time have statistically significant effect on the micropore volume. On mesopore volumes (V meso ) and areas (S meso ), the reaction time and NaOH concentration factors have statistically significant effects. In the case of mesopore volumes, the second order reaction time and NaOH concentration interaction factor are also significant. On the other hand, only the alkali concentration affected, negatively, the relative crystallinity. Two hierarchical ZSM-5 zeolites with the highest relative crystallinity and mesoporosity were selected and further characterized by inductively coupled plasma (ICP) analysis, 29 Si nuclear magnetic resonance (NMR), 27 Al NMR, Fourier transform infrared (FTIR) spectroscopy in the OH stretch region and pyridine adsorbed FTIR spectroscopy. NMR and FTIR results showed that the alkali treatment selectively removed silica from the zeolite framework, decreasing the SAR (silica-to-alumina ratio) values, while decreasing Br?nsted acid site concentrations and increasing Lewis acid sites concentrations.
机译:通过碱处理(溶解)在两个温度下,两个反应时间和两种NaOH浓度制备等级ZSM-5沸石。使用2 3个因子设计来研究这些变量对沸石的结晶度,微孔和中孔隙的影响。阶乘设计分析表明,温度,反应时间和NaOH浓度和温度和时间之间的二阶相互作用对微孔体积有统计学意义。在中孔体积(V MESO)和区域(S MESO)上,反应时间和NaOH浓度因子具有统计学上的显着效果。在中孔体积的情况下,二阶反应时间和NaOH浓度相互作用因子也显着。另一方面,只有碱浓度影响,负面,相对结晶度。选择具有最高相对结晶度和中孔孔的两种层级ZSM-5沸石,其进一步用电感耦合等离子体(ICP)分析,29Si核磁共振(NMR),27 Al NMR,傅立叶变换红外(FTIR)光谱法拉伸区域和吡啶吸附的FTIR光谱。 NMR和FTIR结果表明,碱处理从沸石骨架中选择性地除去二氧化硅,降低SAR(二氧化硅 - 氧化铝比)值,同时降低Brαnsted酸位点浓度并增加Lewis酸位点浓度。

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