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首页> 外文期刊>Iranian Journal of Catalysis >Adsorptive desulfurization of oil derivatives using nanostructured Mg-Al layered double hydroxides: Experimental design and modeling
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Adsorptive desulfurization of oil derivatives using nanostructured Mg-Al layered double hydroxides: Experimental design and modeling

机译:纳米结构的Mg-Al层状双氢氧化物对石油衍生物的吸附脱硫:实验设计和建模

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This study focuses on the application of nanostructured Mg-Al layered double hydroxide as a promising adsorbent in desulfurization of dibenzothiophene, an aromatic sulfur bearing compound from gasoil model. The Mg-Al LDH was synthesized by a co-precipitation method and characterized by FT-IR, XRD, EDX and SEM. The XRD and FT-IR approved the layered structure and crystalline form of the adsorbent, the EDX showed the material content in synthesized adsorbent and SEM approved the nanostructure of the synthesized LDH. Four factors were selected as effective factors of desulfurization process. The optimum state of the factors, including calcination temperature of Mg-Al LDH, dibenzothiophene concentration, adsorbent amount and treatment times selected as the 600 ?C, 50 ppm, 0.1 mg and 120 min, respectively and the highest desulfurization percentage reached to 73.24%.
机译:这项研究的重点是纳米结构的Mg-Al层状双氢氧化物作为有前景的吸附剂在二苯并噻吩(一种来自瓦斯油模型的芳族含硫化合物)脱硫中的应用。 Mg-Al LDH采用共沉淀法合成,并用FT-IR,XRD,EDX和SEM表征。 XRD和FT-IR证实了吸附剂的层状结构和晶型,EDX显示了合成吸附剂中的物质含量,SEM证明了合成LDH的纳米结构。选择了四个因素作为脱硫过程的有效因素。 Mg-Al LDH的煅烧温度,二苯并噻吩的浓度,吸附剂的量和处理时间分别为600°C,50 ppm,0.1 mg和120 min,这些因素的最佳状态分别为最高脱硫率达到73.24% 。

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