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A Novel Preparation of SAPO-18 Molecular Sieve with Enhanced Stability for Dimethyl Ether to Olefins

机译:SAPO-18分子筛二甲醚对烯烃具有更高稳定性的新型制备方法

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SAPO-18 molecular sieve is an important catalyst for dimethylether-to-olefins (DTO) reaction. Although the conventional synthesized SAPO-18 using N,N'-diisopropylethylamine (DIEA) alone exhibits nanoparticles and better catalytic performance due to the weaker diffusion resistance, its high cost of preparation and difficult separation of the powder limit the industrial process of this type of molecular sieve. Therefore, reducing the cost and increasing the particle size appropriately become the key issues for its practical application. In this study, SAPO-18 catalysts were synthesized hydrothermally using mixture of triethylamine (TEA) and a small amount of DIEA as templates. The results revealed that fairly pure SAPO-18 molecular sieve with particle size of approximately 1.0 mu m could be synthesized under the initial gel composition as: xDIEA:(1.4-x)TEA: 1.0 Al2O3: 0.9 P2O5:0.6SiO(2):50H(2)O, where x varies from 0.2 to 0.6. Furthermore, the catalytic performance for DTO reaction over the novel synthesized SAPO-18 catalysts showed higher selectivities to light olefins and much lower coke deposition than the conventional synthesized SAPO-18 using DIEA alone.
机译:SAPO-18分子筛是二甲醚与烯烃(DTO)反应的重要催化剂。尽管仅使用N,N'-二异丙基乙胺(DIEA)的常规合成SAPO-18由于具有较弱的扩散阻力而显示出纳米颗粒和更好的催化性能,但其制备成本高和粉末难以分离限制了此类工业生产过程分子滤网。因此,适当地降低成本和增加粒径成为其实际应用的关键问题。在这项研究中,使用三乙胺(TEA)和少量DIEA的混合物为模板,水热合成SAPO-18催化剂。结果表明,在初始凝胶组成下,可以合成出粒径约为1.0微米的相当纯的SAPO-18分子筛:xDIEA:(1.4-x)TEA:1.0 Al2O3:0.9 P2O5:0.6SiO(2): 50H(2)O,其中x在0.2到0.6之间变化。此外,与仅使用DIEA的常规合成SAPO-18相比,在新型合成SAPO-18催化剂上进行DTO反应的催化性能显示出对轻烯烃的更高选择性和更低的焦炭沉积。

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