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首页> 外文期刊>Reaction kinetics,mechanisms and catalysis >Synthesis of hierarchical SAPO-34 catalysts modified with manganese nanoparticles for conversion of methanol to light olefins: a deactivation and regeneration study
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Synthesis of hierarchical SAPO-34 catalysts modified with manganese nanoparticles for conversion of methanol to light olefins: a deactivation and regeneration study

机译:用锰纳米粒子改性的分层SAPO-34催化剂的合成用于将甲醇转化为轻烯烃:失活和再生研究

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摘要

The hierarchical type 34 silicoaluminophosphate (SAPO-34) catalysts containing manganese were synthesized in the presence of carbon nanotube as mesopore template and tested in the transformation of methanol to light olefin. Also, the regenerability of spent catalysts after methanol to olefins (MTO) reaction was studied. In order to investigate the effect of manganese on the framework and extra framework of SAPO-34 structure, manganese species were added to SAPO-34 by isomorphous substitution and impregnation methods. The physicochemical properties of modified hierarchical samples such as crystallinity, acidity, porosity and reducibility were strongly dependent on the metal addition method. The modified hierarchical samples showed superior performance in the terms of activity and longevity compared to unmodified hierarchical SAPO-34. Among the samples, hierarchical MnAPSO-34 catalyst prepared by isomorphous substitution exhibited the best performance in the MTO reaction. The characterization of the used hierarchical catalysts by TGA analysis revealed that the deposited coke on modified samples was lower compared to unmodified hierarchical SAPO-34. The regenerated modified hierarchical SAPO-34 samples showed more enhanced ethylene selectivity in the MTO reaction and longer lifetime due to the existence of more methylated naphthalenes and methylated benzenes in the residual coke after regeneration.
机译:在碳纳米管作为中孔模板的存在下,合成含有锰的分层34型硅铝磷酸盐(SAPO-34)催化剂,并在甲醇转化中测试光烯烃。而且,研究了废催化剂在甲醇至烯烃(MTO)反应后的催化剂的再生性。为了研究锰对SAPO-34结构框架和额外框架的影响,通过同构替代和浸渍方法将锰物种加入到SAPO-34中。改性分层样品的物理化学性质如结晶度,酸度,孔隙率和再减少性强烈取决于金属添加方法。与未修改的分层SAPO-34相比,修改的分层样本在活动和寿命方面表现出优异的性能。在样品中,通过同晶取代制备的分层MNAPSO-34催化剂表现出MTO反应中的最佳性能。通过TGA分析表征使用的分层催化剂的表征显示,与未修饰的等级SAPO-34相比,沉积的焦炭对改性样品进行较低。再生改性的等级SAPO-34样品在MTO反应中显示出更高增强的乙烯选择性,并且由于在再生后残留焦炭中的甲基化萘烯和甲基化苯而更长的寿命。

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