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Selective production of xylenes from alkyl-aromatics and heavy reformates over dual-zeolite catalyst

机译:在双沸石催化剂上由烷基芳烃和重整产物选择性生产二甲苯

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Disproportionation of 1,2,4-trimethylbenzene (1,2,4-TMB), its transalkylation with toluene as well as dealkylation of ethyltoluenes (ETs) over MOR and MFI zeolites were investigated in a fluidized-bed reactor at 300-400 degrees C. MFI exhibited good ET conversion (60 wt.%), high dealkylation selectivity (60%), but low disproportionation and transalkylation activities. MOR showed high ET conversion (80 wt.%) with low dealkylation selectivity (33%), and high disproportionation and transalkylation activities. Based on these results, a dual-zeolite catalyst consisting of MOR and MFI was proposed to promote the diverse reactions leading to selective production of xylenes via dealkylation-transalkylation of alkylaromatics. Single-zeolite (MOR-based) and dual-zeolite (MOR- and MFI-based) catalysts were prepared by addition of binder, characterized and evaluated for the conversion of C-8+ and C-9+ heavy reformates (either alone or with the addition of various amounts of toluene). The catalysts exhibited little differences in disproportionation and transalkylation activities. However, the dealkylation of ETs was enhanced over dual-zeolite catalyst, which can be attributed to its higher acid site strength. The reduction in microporous volume in dual-zeolite catalysts prevented some undesired secondary reactions, which require formation of bimolecular reaction intermediates. Compared with the single-zeolite catalyst, the dualzeolite catalyst exhibited an increase in the xylenes yield from 16.6 to 19.8 wt.% and an enhancement in xylene selectively from 37.1 to 43.3% in the conversion of C-9+ heavy reformate at 400 degrees C. Addition of about 20 wt.% toluene to heavy reformate feed resulted in further increase in xylenes yield to 21.2 wt.% over the dual-zeolite catalyst. (C) 2014 Elsevier B.V. All rights reserved.
机译:在流化床反应器中于300-400度下研究了1,2,4-三甲苯(1,2,4-TMB)歧化,与甲苯的烷基转移以及乙基甲苯(ETs)在MOR和MFI沸石上的脱烷基C. MFI表现出良好的ET转化率(60 wt。%),高的脱烷基选择性(60%),但歧化和烷基转移活性低。 MOR显示出高的ET转化率(80重量%)和低的脱烷基选择性(33%),以及高的歧化和烷基转移活性。基于这些结果,提出了一种由MOR和MFI组成的双沸石催化剂,以促进多样化的反应,从而通过烷基芳烃的脱烷基-烷基转移选择性地生产二甲苯。通过添加粘合剂制备单沸石(基于MOR的催化剂)和双沸石(基于MOR和MFI的催化剂),表征并评估C-8 +和C-9 +重整产物的转化率(单独使用或并加入各种量的甲苯)。催化剂在歧化和烷基转移活性上显示出很小的差异。然而,与双沸石催化剂相比,ETs的脱烷基作用增强了,这可以归因于其较高的酸位强度。双沸石催化剂中微孔体积的减少防止了一些不希望的副反应,这些副反应需要形成双分子反应中间体。与单沸石催化剂相比,在400℃下C-9 +重整产物的转化中,二沸石催化剂表现出二甲苯产率从16.6重量%增加到19.8重量%,二甲苯选择性从37.1%增加到43.3%。向重整重整产物进料中加入约20重量%的甲苯导致二甲苯产率比双沸石催化剂进一步提高至21.2重量%。 (C)2014 Elsevier B.V.保留所有权利。

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