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Unsaturated aldehydes: a novel route for the synthesis of pyridine and 3-picoline

机译:不饱和醛:合成吡啶和3-甲基吡啶的新途径

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摘要

A novel reaction pathway was developed for the synthesis of pyridine and 3-picoline from the condensation of gas-phase acrolein dimethyl acetal or acrolein diethyl acetal and ammonia over various catalysts in a fixed-bed reactor. ZnO loaded on alkaline-acid sequentially-treated HZSM-5, namely ZnO/HZSM-5-At-acid, was prepared and employed in these reactions for the first time. 3-Picoline, without the generation of 4-picoline, was obtained from the condensation of acrolein dimethyl acetal and ammonia. The ZnO/HZSM-5-At-acid catalyst was proven to be the most promising catalyst relative to other catalysts in this study. The stability of the ZnO/HZSM-5-At-acid catalyst was remarkably higher than that of the ZnO/HZSM-5 catalyst. The catalysts were characterized using XRD, Al-27 MAS NMR, XPS, UV-vis DRS, N-2-physisorption, NH3-TPD and TG technologies and the results revealed that the pore structure, acidity and location of ZnO had great influence on the total yield of pyridine and 3-picoline, and the catalyst stability.
机译:在固定床反应器中,通过气相丙烯醛二甲基乙缩醛或丙烯醛二乙缩醛和氨在各种催化剂上的缩合反应,开发了一种新的吡啶和3-甲基吡啶的合成反应途径。制备了负载在碱性酸顺序处理过的HZSM-5上的ZnO,即ZnO / HZSM-5-At-acid,并将其首次用于这些反应中。由丙烯醛二甲基乙缩醛和氨的缩合得到3-甲基吡啶,没有生成4-甲基吡啶。在本研究中,相对于其他催化剂,ZnO / HZSM-5-At-acid催化剂被证明是最有前途的催化剂。 ZnO / HZSM-5-At-酸催化剂的稳定性明显高于ZnO / HZSM-5催化剂。用XRD,Al-27 MAS NMR,XPS,UV-vis DRS,N-2-physisorption,NH3-TPD和TG等方法对催化剂进行了表征,结果表明,ZnO的孔结构,酸度和位置对催化剂的影响很大。吡啶和3-甲基吡啶的总收率,以及催化剂的稳定性。

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