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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Seed-assisted synthesis of ZSM-48 zeolite with low SiO2/Al2O3 ratio for n-hexadecane hydroisomerization
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Seed-assisted synthesis of ZSM-48 zeolite with low SiO2/Al2O3 ratio for n-hexadecane hydroisomerization

机译:ZSM-48沸石的种子辅助合成,具有低SiO2 / Al2O3比对N-十六烷基烷加氢异构化的比例

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摘要

Synthesis of highly-crystallized ZSM-48 zeolite with low SiO2/Al2O3 ratio was successfully performed via seedassisted route. The influence of various factors on the seed-assisted synthesis was investigated systematically, including the seeds dosages, different seeds species, adding order of seeds, hydrothermal temperature and time, silica and aluminum sources, and gel compositions. The crystallinity, morphology, textural and acidic properties of ZSM-48 were characterized by various techniques, such as XRD, SEM, FTIR, Py-IR, N-2 physisorption, Si-29 and Al-22 MAS NMR. Aluminum sources posed a critical influence on the crystallinity with NaAlO2 more beneficial to obtain well-crystallized ZSM-48, whereas the crystallinity seemed slightly susceptible to silica sources. SEM results revealed that the crystal size was significantly reduced from ca. 20 mu m to around 2 mu m after introduced the seeds. Kinetic analysis suggested that the added seeds can significantly reduce the apparent activation energy of nucleation and crystallization, encourage the formation of crystal nuclei and promote crystallization. The Pt-supported seed-assisted samples exhibited considerably higher density of acid sites than that loaded on seed-free sample. The hydroisomerization of n-hexadecane was investigated over various Pt-supported catalysts, and the Pt-supported seed-assisted samples exhibited the highest i-C-16 yield of ca. 75 wt% at conversion over 87 wt%.
机译:通过蚕食途径成功地成功地进行高度结晶的ZSM-48沸石的合成。系统地研究了各种因素对种子辅助合成的影响,包括种子剂量,不同种子物种,种子,加热温度和时间,二氧化硅和铝源的增加顺序,以及凝胶组合物。 ZSM-48的结晶度,形态,纹理和酸性特性是通过各种技术的特征,例如XRD,SEM,FTIR,Py-IR,N-2物理吸附,Si-29和Al-22MAMR。铝源对Naalo2的结晶度提出了临界影响,更有益,以获得良好结晶的ZSM-48,而结晶度似乎略微易于二氧化硅源。 SEM结果显示,晶体尺寸从CA显着降低。介绍了种子后20亩至约2亩。动力学分析表明,添加的种子可以显着降低成核和结晶的表观活化能量,促进晶体核的形成并促进结晶。 Pt支持的种子辅助样品表现出比在无种过的种子样品上的酸位点的相当高的密度。在各种Pt负载型催化剂上研究了N-十六烷烷的氢代异质,并且PT负载的种子辅助样品表现出CA的最高I-C-16产量。转化时75wt%超过87wt%。

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