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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Photoassisted Desulfurization Induced by Visible-Light Irradiation for the Production of Ultra-Low Sulfur Diesel Fuel Using Nanoparticles of CdO
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Photoassisted Desulfurization Induced by Visible-Light Irradiation for the Production of Ultra-Low Sulfur Diesel Fuel Using Nanoparticles of CdO

机译:可见光辐射诱导的光辅助脱硫,利用CdO纳米粒子生产超低硫柴油燃料

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The heterogeneous photocatalytic desulfurization processes have been paid wide attention due to their effectiveness in removing the condensed organo-sulfur compounds. Such methods may gain greater consideration via utilizing the visible light in general and sun spectrum in particular. This research work aims to produce low sulfur diesel fuel through a catalyzed photochemical route using nanoparticles of CdO under the visible-light irradiation. Two various structures of CdO were prepared in this study by both the chemical precipitation and autoignition techniques. The structural and morphological characteristics of the obtained cadmium oxides were determined via different tools of analyzes. The production of a low sulfur diesel fuel was then investigated under various operating parameters, such as type of light source, catalyst-to-feed dosage, and reaction time. The effect of adding oxidizing agents at different concentrations on the desulfurization process was also studied. After the maximum sulfur removal had been detected under the optimum conditions, the ultimate removal of sulfur was attained through a subsequent solvent extraction step. A diesel fuel with a sulfur content of 45 ppm was acquired at the end of this research study. A total sulfur removal of 99.6 wt % was obtained because the original diesel fuel feedstock has an overall concentration of the sulfur compounds of 11 500 ppm.
机译:由于非均相光催化脱硫方法在去除缩合的有机硫化合物方面的有效性,因此受到了广泛的关注。通过一般地利用可见光,尤其是利用太阳光谱,这样的方法可以得到更大的考虑。这项研究工作的目的是在可见光照射下使用CdO纳米颗粒通过催化的光化学途径生产低硫柴油。本研究通过化学沉淀和自燃技术制备了两种不同结构的CdO。通过不同的分析工具确定了所获得的氧化镉的结构和形态特征。然后在各种操作参数下研究了低硫柴油的生产,例如光源类型,催化剂进料剂量和反应时间。还研究了添加不同浓度的氧化剂对脱硫过程的影响。在最佳条件下检测到最大的硫去除量后,通过随后的溶剂萃取步骤最终去除了硫。在本研究结束时,获得了硫含量为45 ppm的柴油燃料。因为原始柴油燃料原料的总硫化合物浓度为11 500 ppm,所以总硫去除率为99.6 wt%。

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