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Twin-fold new methodology arising from microwave induced carbonization of newspaper waste for the adsorptive desulfurization of model oil

机译:微波诱导报纸废弃物碳化的双折新方法,用于模型油的吸附脱硫

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The removal of sulfur from diesel is an important concern. In this context, it is vital to explore the potential of low-cost adsorbents for desulfurization. In the present study, a mesoporous carbonaceous material was produced from the newspaper waste and utilized in the removal of Dibenzothiophene (DBT) through adsorptive desulfurization. The microwave-assisted mesoporous carbon fostered pi interaction with DBT molecules and augmented the adsorptive desulfurization. The synthesized mesoporous carbon is endowed with good textural properties, porosity and uniformly distributed active sites. The characterization techniques such as SEM-EDX, FTIR, XRF, XPS and pore size measurements ascertained the desulfurization and the adsorption process gave best fit for Langmuir adsorption isotherm model following the pseudo-second-order kinetics. The regeneration studies ascertained the reusability of the adsorbent using toluene as the solvent for three adsorption-desorption cycles.
机译:从柴油中取出硫是一个重要的关注。 在这种情况下,探讨脱硫的低成本吸附剂的潜力至关重要。 在本研究中,从报纸废物中产生介孔的碳质材料,并通过吸附脱硫来除去二苯并噻吩(DBT)。 微波辅助介孔碳培养了与DBT分子的PI相互作用,并增强了吸附性脱硫。 合成的介孔碳具有良好的纹理性质,孔隙度和均匀分布的活性位点。 诸如SEM-EDX,FTIR,XRF,XPS和孔径测量的表征技术确定了脱硫,并且吸附过程在伪二阶动力学之后对Langmuir吸附等温线模型得到了最佳的。 再生研究利用甲苯作为三种吸附 - 解吸循环的溶剂来确定吸附剂的可重用性。

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