首页> 外文期刊>Clays and clay minerals >SYNTHESIS AND ADSORPTION DESULFURIZATION PERFORMANCE OF MODIFIED MESOPOROUS SILICA MATERIALS M-MCM-41 (M= Fe, Co, Zn)
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SYNTHESIS AND ADSORPTION DESULFURIZATION PERFORMANCE OF MODIFIED MESOPOROUS SILICA MATERIALS M-MCM-41 (M= Fe, Co, Zn)

机译:改性介孔二氧化硅材料M-MCM-41(M = Fe,Co,Zn)的合成和吸附脱硫性能

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摘要

Adsorption desulfurization is a potential new method for deep desulfurization of fuel oil. The development of adsorbents with high adsorption capacity and selectivity is the core of deep adsorption desulfurization. The adsorption behavior of thiophene in MCM-41 mesoporous materials modified by various metal ions was studied in order to understand the adsorption desulfurization process of molecular sieves. The Fe-, Co-, and Zn-modified MCM-41 materials were prepared using a one-step in situ hydrothermal synthesis method. The modified MCM-41 molecular sieves maintained the mesoporous structure, and the metal ions had specific dispersion on the surface of the molecular sieves. Adsorption of thiophene on the surfaces of molecular sieves had both physical and chemical characteristics. The adsorption desulfurization performance of the modified molecular sieve was superior to that of the pure silica molecular sieve. In the simulated gasoline with sulfur content of 220 mu g/g, when the amount of adsorbent used was 100 mg, the adsorptive desulfurization performance tended to be in equilibrium, and the optimum adsorption temperature was 30 degrees C. Fe-MCM-41 and MCM-41 molecular sieves reached adsorption equilibrium after similar to 60 min, but the desulfurization rate of Co-MCM-41 and Zn-MCM-41 still increased slightly. The kinetic simulation results indicated that the pseudo-second-order kinetics adsorption model described well the adsorption process of thiophene on molecular sieves. The molecular sieve Fe-MCM-41 had the best desulfurization performance with an equilibrium adsorption capacity of 14.02 mg/g and the desulfurization rate was similar to 90%.
机译:吸附脱硫是燃料油深脱硫的潜在新方法。吸附能力和选择性高的吸附剂的发展是深吸吸附脱硫的核心。研究了噻吩在由各种金属离子改性的MCM-41中孔材料中的吸附行为,以了解分子筛的吸附脱硫过程。使用单步式水热合成方法制备Fe,Co-和Zn改性的MCM-41材料。改性的MCM-41分子筛保持了中孔结构,金属离子在分子筛的表面上具有特异性分散体。噻吩对分子筛表面的吸附具有物理和化学特性。改性分子筛的吸附脱硫性能优于纯二氧化硅分子筛的脱硫性能。在模拟汽油中具有220μg/ g的硫含量,当使用的吸附剂量为100mg时,吸附性脱硫性能往定处于平衡状态,并且最佳吸附温度为30℃。Fe-MCM-41和MCM-41分子筛在类似于60分钟后达到吸附平衡,但CO-MCM-41和Zn-MCM-41的脱硫率仍然略微增加。动力学仿真结果表明,伪二阶动力学吸附模型描述了噻吩对分子筛的吸附过程。分子筛Fe-MCM-41具有最佳的脱硫性能,平衡吸附容量为14.02mg / g,脱硫率类似于90%。

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