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Adsorptive desulfurization of dibenzothiophene (DBT) in model petroleum distillate using functionalized carbon nanotubes

机译:用官能化碳纳米管馏分模型石油馏分中二苯并噻吩(DBT)的吸附脱硫

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Industrial hydrodesulfurization method has not been efficient for removal of dibenzothiophene (DBT) from petroleum distillates. Therefore, in this current study, adsorptive desulfurization (investigated in batch mode) was carried out using functionalized carbon nanotubes (FCNTs) to reduce the amount of DBT in a model diesel. Different techniques, such as, scanning electron microscope (SEM) equipped with energy-dispersive X-ray (EDX), were used to check the morphological structure and the elemental compositions of the adsorbent; Fourier transmission infrared (FTIR) was used to check the chemical functionalities of the adsorbent; and nitrogen physisorption at 77?K was used to check the surface area, pore size, and pore volume of the adsorbent. The results show that the FCNTs outperformed the non-functionalized carbon nanotubes (CNTs) during the desulfurization by about 10%, indicating the functionalization did improve the desulfurization performance of the CNTs. The % removal of DBT by the FCNTs and CNTs was 70.48 and 60.88%, respectively. It can be concluded that the acid treatment of CNTs enhanced its surface affinity for DBT, thus contributing to the improved adsorption performance of the adsorbent. The isotherm results show that Freundlich isotherm model described well the mechanism of the adsorption process for both CNTs and FCNTs. In addition, pseudo second-order kinetics describes the behavior of the adsorbents during the adsorption process. The results obtained in this study therefore show that functionalized CNTs could be efficient and potential adsorbent for removal of DBT in petroleum distillate (e.g., diesel), to meet up with the stringent policies regarding emission of sulfur oxides.
机译:工业加氢脱硫方法没有有效地从石油中除去二苯并噻吩(DBT)。因此,在该研究中,使用官能化碳纳米管(FCNT)来进行吸附脱硫(在批量模式中研究),以减少模型柴油中的DBT量。诸如配备有能量分散X射线(EDX)的扫描电子显微镜(SEM)的不同技术用于检查吸附剂的形态结构和元素组成;傅里叶传输红外线(FTIR)用于检查吸附剂的化学功能;和77μk的氮原料用于检查吸附剂的表面积,孔径和孔体积。结果表明,FCNTS在脱硫期间优于非官能化碳纳米管(CNT)约10%,表明官能化确实改善了CNT的脱硫性能。 FCNT和CNT的DBT的百分比分别为70.48%和60.88%。可以得出结论,CNT的酸处理增强了对DBT的表面亲和力,从而有助于提高吸附剂的吸附性能。等温结果表明,Freundlich等温模型描述了CNT和FCNT的吸附过程机制。此外,伪二阶动力学描述了吸附过程中吸附剂的行为。因此,在该研究中获得的结果表明,官能化的CNT可以是有效的,并且可以是用于除去DTB中的DBT中的潜在吸附剂,以满足关于硫氧化物排放的严格策略。

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