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Desulfurization of jet fuel by pi-complexation adsorption with metal halides supported on MCM-41 and SBA-15 mesoporous materials

机译:通过MCM-41和SBA-15介孔材料负载的金属卤化物通过pi络合吸附对喷气燃料进行脱硫

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Desulfurization of a JP-5 light fraction (841 ppmw S) for fuel cell applications was achieved by pi-complexation adsorption with CuCl and PdCl2 supported on the MCM-41 and SBA-15 mesoporous materials. CuCl/MCM-41, PdCl2/MCM-41, CuCl/SBA-15 and PdCl2/SBA-15 sorbents were prepared with spontaneous monolayer dispersion of metal halides onto surfaces of supports. These sorbents were characterized with XRD, N-2 physical adsorption and CO chemisorption. The results showed that the mesoporous structures remained in the supported sorbents. Desulfurization of JP-5 light fraction with these sorbents was investigated at room temperature. PdCl2/SBA-15 showed by far the highest capacity of selective sulfur adsorption among all known sorbents, and the significant breakthrough occurred at about 50.0ml/g for desulfurization of JP-5 light fraction. The total sulfur content of JP-5 light fraction can be reduced from 841 ppmw S to below 50.0 ppmw S. The spent PdCl2/SBA-15 was regenerated by purge with benzene at 70 degrees C, and the regenerated PdCl2/SBA-15 was tested again for the desulfurization. The results showed that about 44% and 48% of the sulfur capacity were recovered at breakthrough and saturation, respectively. (C) 2007 Elsevier Ltd. All rights reserved.
机译:通过与MCM-41和SBA-15介孔材料负载的CuCl和PdCl2进行pi络合吸附,实现了用于燃料电池的JP-5轻馏分(841 ppmw S)的脱硫。制备CuCl / MCM-41,PdCl2 / MCM-41,CuCl / SBA-15和PdCl2 / SBA-15吸附剂,使金属卤化物自发地单层分散在载体表面上。这些吸附剂通过XRD,N-2物理吸附和CO化学吸附进行表征。结果表明,介孔结构保留在负载的吸附剂中。在室温下研究了这些吸附剂对JP-5轻馏分的脱硫。在所有已知的吸附剂中,PdCl2 / SBA-15迄今为止显示出最高的选择性硫吸附能力,并且对JP-5轻馏分进行脱硫时,其显着突破发生在约50.0ml / g。 JP-5轻馏分的总硫含量可以从841 ppmw S降至50.0 ppmw S以下。用过的PdCl2 / SBA-15通过在70摄氏度下用苯吹扫进行再生,而再生的PdCl2 / SBA-15为再次测试脱硫。结果表明,在突破和饱和状态下分别回收了约44%和48%的硫容量。 (C)2007 Elsevier Ltd.保留所有权利。

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