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SAPO-34 with a low acidity outer layer by epitaxial growth and its improved MTO performance

机译:外延生长具有低酸度外层的SAPO-34及其改进的MTO性能

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Although it is known that a low-silica SAPO-34 zeolite gives good MTO performance, the direct synthesis of a SAPO-34 zeolite with a low acid site density suffers from the problem of low yield and impure crystallinity. In this work, SAPO-34 zeolite samples with an appropriate low acid site density were synthesized as a low acid site outer layer on a high acid site core by epitaxial growth using a two-step hydrothermal synthesis. The samples were characterized by SEM, TEM, EDS-lining, XRD, ICP, XPS, TPD-NH3, TGA-Py and Ar adsorption. EDS-lining confirmed a silica distribution of a high-silica core and low-silica outer layer in the two-step synthesized SAPO-34 particles, and determined the thickness of low-silica outer layer to be 200?nm. The two-step synthesized samples have the CHA structure and gave good molecular sieve selectivity. The second-step growth used a low concentration of silica in the source to decrease the Si/Al ratio of the bulk solid phase, leading to the reduction of acid site density. Catalytic activity evaluation in a microreactor revealed that the two-step synthesized SAPO-34 zeolite gave both better MTO performance and hydrothermal stability compared to a zeolite produced by the one-step synthesis. The low acid site outer layer of the two-step synthesized samples had reduced coking and diffusion limitation, resulting in increased lifetime. This work provides a practical catalyst synthesis strategy of SAPO-34 catalysts for the MTO industry, by showing that a small high-silica core coated by a low-silica outer layer of appropriate thickness is a good structure for improved MTO performance.
机译:尽管已知低二氧化硅SAPO-34沸石具有良好的MTO性能,但是具有低酸位密度的SAPO-34沸石的直接合成存在产率低和结晶度不纯的问题。在这项工作中,采用两步水热合成法通过外延生长,将具有适当低酸位密度的SAPO-34沸石样品合成为高酸位核心上的低酸位外层。通过SEM,TEM,EDS-衬里,XRD,ICP,XPS,TPD-NH 3 ,TGA-Py和Ar吸附对样品进行表征。 EDS-衬里证实了两步合成的SAPO-34颗粒中高二氧化硅核和低二氧化硅外层的二氧化硅分布,并将低二氧化硅外层的厚度确定为200?nm。两步合成的样品具有CHA结构,并具有良好的分子筛选择性。第二步生长在源中使用低浓度的二氧化硅以降低整体固相的Si / Al比,从而导致酸位密度降低。在微反应器中的催化活性评估表明,与一步合成的沸石相比,两步合成的SAPO-34沸石具有更好的MTO性能和水热稳定性。两步合成样品的低酸位外层降低了焦化和扩散限制,从而延长了使用寿命。这项工作为MTO工业提供了一种实用的催化剂合成策略,适用于MTO行业的SAPO-34催化剂,表明由适当厚度的低二氧化硅外层包覆的小的高二氧化硅核是改善MTO性能的良好结构。

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