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Microwave-Assisted Adsorptive Desulfurization of Model Diesel Fuel Using Synthesized Microporous Rare Earth Metal-Doped Zeolite Y

机译:使用合成微孔稀土金属掺杂沸石Y微波辅助模型柴油燃料的吸附脱硫

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摘要

The microwave-assisted adsorptive desulfurization of model fuel (thiophene in n-heptane) was investigated using a synthesized rare earth metal-doped zeolite Y (RE Y). Crystallinity of the synthesized zeolite was 89.5%, the silicon/aluminium (Si/Al) molar ratio was 5.2, the Brunauer–Emmett–Teller (BET) surface area was 980.9 m2/g, and the pore volume and diameter was 0.3494 cm3/g and 1.425 nm, respectively. The results showed that the microwave reactor could be used to enhance the adsorptive desulfurization process with best efficiency of 75% at reaction conditions of 100 °C and 15 minutes. The high desulfurization effect was likely due to the higher efficiency impact of microwave energy in the interaction between sulfur in thiophene and HO-La(OSiAl).
机译:使用合成的稀土金属掺杂沸石Y(RE Y)研究了模型燃料的微波辅助吸附脱硫(正庚烷中的噻吩)。合成沸石的结晶度为89.5%,硅/铝(Si / Al)摩尔比为5.2,Brunauer-Emmett-exers(Bet)表面积为980.9m 2 / g,孔体积和直径为0.3494cm3 / G和1.425 nm分别。结果表明,微波反应器可用于增强吸附脱硫过程,在100℃和15分钟的反应条件下最佳效率为75%。高脱硫效果可能是由于微波能量在噻吩和HO-LA(OSIAL)中硫相互作用中的效率较高的影响。

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