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Enhancement of catalytic lifetime of nanostructured SAPO-34 in conversion of biomethanol to light olefins

机译:在生物甲醇转化为轻质烯烃的过程中提高纳米结构SAPO-34的催化寿命

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Nanostructured SAPO-34 was synthesized via moderate temperature hydrothermal method in various synthesis times with controlled particle size. The effect of crystallization time on purity and crystallinity of synthesized samples was investigated. The catalysts were characterized by XRD, FESEM, BET, FTIR and EDX techniques. According to the XRD analysis, all the samples have chabazite structure related to SAPO-34. By decreasing crystallization time, pure phase was produced and the particle size reduced. BET analysis illustrated high surface area for all catalysts especially for pure samples. Synthesis at moderate temperature resulted in spherical morphology by the aggregation of nano-sized crystallites. Significant difference was observed in the deactivation behavior of the synthesized catalysts. Samples with high crystallinity and small particles had proper catalytic lifetime. In addition, all synthesized catalysts at moderate temperature had longer lifetime than the synthesized sample at lower temperature and longer crystallization time. The SAPO-34 synthesized at 250 degrees C and 16 h was found to be the best catalyst regarding to the time on stream performance due to high crystallinity and relevant morphology. This catalyst had 23 h lifetime in the methanol to olefins process while the synthesized sample at low temperature had 4 h lifetime. (C) 2014 Elsevier Inc. All rights reserved.
机译:纳米结构的SAPO-34是通过中温水热法在不同的合成时间,控制的粒径下合成的。研究了结晶时间对合成样品纯度和结晶度的影响。通过XRD,FESEM,BET,FTIR和EDX技术对催化剂进行了表征。根据XRD分析,所有样品均具有与SAPO-34有关的菱沸石结构。通过减少结晶时间,产生了纯相并且减小了粒径。 BET分析表明,所有催化剂尤其是纯样品的表面积都很高。在中等温度下的合成通过纳米微晶的聚集而导致球形形态。观察到合成催化剂的失活行为存在显着差异。具有高结晶度和小颗粒的样品具有适当的催化寿命。另外,所有在中等温度下合成的催化剂比在较低温度和更长的结晶时间下合成的样品具有更长的寿命。在250℃和16小时下合成的SAPO-34由于高的结晶度和相关的形态被认为是最佳的生产时间催化剂。该催化剂在甲醇制烯烃过程中具有23小时的寿命,而在低温下合成的样品具有4小时的寿命。 (C)2014 Elsevier Inc.保留所有权利。

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