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Conversion of methanol to aromatics in fluidized bed reactor

机译:在流化床反应器中将甲醇转化为芳烃

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Conversion of methanol to aromatics (MTA) was conducted over a fresh or a spent Zn/ZSM-5 catalyst in single stage fluidized bed (SSFB) and two stage fluidized bed (TSFB). Sampling at different stages of TSFB and operation in the temperature range of 250, 275, 300, 325, 350, 380 and 475 °C revealed the consecutive reaction mode from methanol to DME, C1-C4 hydrocarbons, C_(5+) nonaromatics to aromatics finally. High weight ratio of para-xylene (PX) in xylene in wide temperature range suggested that PX was the primary product of MTA, and other xylenes are produced by the iosmerization of PX. Other aromatics such as benzene, toluene and trimethylbenzene are finally produced by the dealkylation, alkylation or disproportionatton of xylene. The adoption of TSFB reactor was effective to increase the yield of aromatics, compared to that using SSFB, due to the inhibition of backmixing of gases. Combination of TSFB and highly active catalyst with strong acids was effective to get high yield of aromatics under high space velocity of methanol.
机译:在单级流化床(SSFB)和两级流化床(TSFB)中,通过新鲜的或用过的Zn / ZSM-5催化剂将甲醇转化为芳烃(MTA)。在温度为250、275、300、325、350、380和475°C的温度下,在TSFB的不同阶段进行采样并进行操作,揭示了从甲醇到DME,C1-C4烃,C_(5+)非芳族化合物到最后是芳香剂。在较宽的温度范围内,对二甲苯(PX)在二甲苯中的重量比很高,这表明PX是MTA的主要产物,而其他二甲苯则是通过PX的介聚作用而产生的。最后,通过二甲苯的脱烷基,烷基化或歧化反应产生其他芳族化合物,例如苯,甲苯和三甲基苯。与使用SSFB相比,采用TSFB反应器可有效提高芳烃的收率,原因是抑制了气体的回混。 TSFB和高活性催化剂与强酸的组合可有效地在高空速甲醇下获得高产率的芳烃。

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