Desulphurization of Commercial Diesel Fuel using Activated Carbon-Based Metal Oxide Nanocomposites

Cherubala B
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Abstract

This paper presents a slight on desulphurization process of the commercial diesel fuel using the carbon-based metal oxide nanocomposites such as graphene oxide, ZnO, rGO as a nano-adsorbent, activated carbon (PAC and AC) and charcoal Granular active carbon (GAC) to produce a fuel less than 10 ppm sulphur content. The synthesised of sorbents were achieved using incipient impregnation, microwaved-assisted and chemical exfoliation methods. The materials were characterized using Thermogrametric Analyzer (TGA), Fourier transform infrared spectroscopy (FTIR) and X-ray diffractometer (XRD), Brunauer, Emmett and Teller (BET) technics. The examination effect of operating conditions on the adsorption capacity with DBT and Sulphur compounds adsorption, the isotherms and the adsorption kinetic models were evaluated. The experimental data for PAC and AC were well suited to Freundlich isotherm and pseudo second-order kinetic models. The results shown that the sulphur feed concentration, the space velocity and the functional groups of the adsorbents had a considerable effect on the adsorption. In addition, it was observed that the temperature in the range of 30 to 600 o C had a significant effect on the adsorption of Sulphur compounds from diesel fuel using 20 wt% of sorbents. The rGO substrate which contained abundant oxygen functional groups promoted the dispersion metal oxide and increased the adsorption efficiency of sulphur compounds (H 2 S, SO 3 and SO 2 ) by providing oxygen ions weakly bound to the sulphur molecules. For the desulfurization process by adsorption, PAC and AC exhibited a better affinity for 85% removal of sulphur compared to the GAC and GO.
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活性炭基金属氧化物纳米复合材料在工业柴油脱硫中的应用
本文介绍了以氧化石墨烯、氧化锌、还原氧化石墨烯等碳基金属氧化物纳米复合材料为纳米吸附剂,以活性炭(PAC和AC)和木炭颗粒活性炭(GAC)为原料,制备含硫量小于10ppm的商用柴油脱硫工艺。采用初始浸渍法、微波辅助法和化学剥落法合成了吸附剂。采用热分析仪(TGA)、傅里叶变换红外光谱(FTIR)和x射线衍射仪(XRD)、Brunauer, Emmett和Teller (BET)工艺对材料进行了表征。考察了操作条件对DBT和含硫化合物吸附量、等温线和吸附动力学模型的影响。PAC和AC的实验数据符合Freundlich等温线和伪二级动力学模型。结果表明,硫料浓度、空速和吸附剂官能团对吸附有较大影响。此外,还观察到温度在30 ~ 600℃范围内对使用20%吸附剂的柴油中硫化物的吸附有显著影响。含有丰富氧官能团的氧化石墨烯底物通过提供与硫分子弱结合的氧离子,促进了金属氧化物的分散性,提高了硫化合物(h2s、so3和so2)的吸附效率。在吸附脱硫过程中,PAC和AC比GAC和GO具有更好的85%的脱硫效果。
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