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首页> 外文期刊>ACS catalysis >Cage-Defining Ring: A Molecular Sieve Structural Indicator for Light Olefin Product Distribution from the Methanol-to-Olefins Reaction
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Cage-Defining Ring: A Molecular Sieve Structural Indicator for Light Olefin Product Distribution from the Methanol-to-Olefins Reaction

机译:定义环:来自甲醇 - 烯烃反应的光烯烃产物分布的分子筛结构指示剂

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The methanol-to-olefins (MTO) process produces high-value-added light olefins from nonpetroleum sources. Acidic zeotypes containing cages bounded by 8-ring (small-pore) windows can effectively catalyze the MTO reaction, since their cages can accommodate the necessary aromatic intermediates that produce the light olefin products that escape. While progress on the mechanisms of the MTO reaction continues, zeotype structure reaction property relationships have yet to be elucidated. Here, we report MTO reaction results from various small-pore, cage-containing silicoaluminophosphate/metalloaluminophosphates (SAPO/MAPOs) and zeolites under the same reaction conditions. The MTO behaviors of microporous materials having the following topologies are investigated: LEV, ERI, CHA, AFX, SFW, AEI, DDR, RTH, ITE, SAV, LTA, RHO, KFI, and UFI. The previous observation that light olefin product distributions from a series of small-pore, cage-containing zeolites can be classified into four structural categories is further supported by the results shown here from zeolite structures not investigated in the previous study and SAPO and MAPO materials with isostructural frameworks to all the zeolites. Additionally, these data reveal that light olefin product distributions are very similar over a given topology independent of framework composition. To develop a structure property relationship between the framework topology and the MTO light olefin product distribution, the concept of the cage-defining ring size is introduced. The cage-defining ring size is defined as the minimum number of tetrahedral atoms of the ring encircling the center of the framework cages in the molecular sieve topology. It is shown that the cage-defining ring size correlates with MTO light olefin product distribution.
机译:甲醇 - 烯烃(MTO)工艺产生来自非储物源的高附加光烯烃。含有8环(小孔)窗界界定的含有笼的酸性氮杂型可以有效地催化MTO反应,因为它们的笼子可以容纳产生逸出的轻质烯烃产品的必要芳族中间体。虽然MTO反应的机制继续进行,但甚至尚未阐明Zeotype结构反应性质关系。在此,我们在相同的反应条件下向各种小孔,含含量硅烷磷酸盐/金属铝磷酸盐(SAPO / MAPOS)和沸石的MTO反应结果报告。研究了具有以下拓扑的微孔材料的MTO行为:Lev,Eri,Cha,AFX,SFW,AEI,DDR,Rth,ITE,SAV,LTA,Rho,KFI和UFI。先前观察到从一系列小孔隙,含笼沸石的光烯烃产品分布可以分为四个结构类别,进一步支持在此从先前的研究和SAPO和MAPO材料中没有研究的沸石结构的结果进一步支持所有沸石的Isostrontural框架。此外,这些数据显示,光烯烃产品分布在特定的拓扑上非常相似,与框架组合物无关。为了开发框架拓扑和MTO光烯烃产品分布之间的结构性质关系,介绍了笼式定义环尺寸的概念。笼式定义环尺寸被定义为环形介质在分子筛拓扑中环绕框架笼中的中心的环的最小数量。结果表明,定义笼尺寸与MTO光烯烃产品分布相关。

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