UNICAT, Departamento de Ingeniería Química, Facultad de Química, Universidad Nacional Autónoma de México, Ciudad de México, 04510, Mexico.
UNICAT, Departamento de Ingeniería Química, Facultad de Química, Universidad Nacional Autónoma de México, Ciudad de México, 04510, Mexico.
Chemosphere. 2024 Aug;362:142791. doi: 10.1016/j.chemosphere.2024.142791. Epub 2024 Jul 5.
To obtain fossil fuels with ultra-low S levels at friendly conditions, different V oxides formulations on alumina modified with Fe were characterized and selected to oxidize dibenzothiophene (DBT), 4-methyl DBT and 4,6-dimethyl DBT prevailing in diesel fuel. V-Fe based catalysts (5 or 10 wt% of V) were obtained by impregnation of ammonium metavanadate solutions on Fe-modified alumina, obtained by impregnation of Mohr salt on pseudoboehmite (2 wt% of Fe). The catalysts were calcined in air atmosphere, and after were partially reduced with H flux to obtain a mix of several oxidation states of V and Fe species, to evaluate the interaction of Fe in VO/AlO catalysts and determine its effect on the oxidation processes. The structural and optical properties, as well as surface species, were determined by SEM-EDS, TPR, XRD, Raman, ATR-FTIR, photoluminescence, UV-Vis diffuse reflectance, and XPS spectroscopy. The catalytic performance was evaluated in oxidative desulfurization (ODS) and photocatalytic ODS (PODS) processes. The experimental results showed the addition of Fe promoted the catalytic activity of both ODS and PODS reactions. ODS activities of V-Fe catalysts increase up to 7.5 times with respect to V catalysts without Fe, and the most active catalyst (V5Fer) presents a characteristic oxidation time of 50 min for 4,6-DMDBT. The PODS activity of V10Fec was like ODS activity, showing it is possible to oxidize the dibenzothiophenes under friendly conditions to obtain lower S levels. The promoting effect of Fe was due to the interaction of Fe and Fe with the catalytic support, favoring the distribution of surface V and V species. Additionally, Fe improved the optical properties of the catalysts since the bandgap energy decrease and low recombination rate of the electron-hole pair were observed. Therefore, V-Fe based catalysts are photocatalytically actives to be used in PODS processes.
为了在温和条件下获得超低硫水平的化石燃料,对不同的 V 氧化物配方进行了表征和选择,以氧化柴油中普遍存在的二苯并噻吩(DBT)、4-甲基二苯并噻吩和 4,6-二甲基二苯并噻吩。V-Fe 基催化剂(V 的 5 或 10wt%)是通过将偏钒酸铵溶液浸渍在通过莫尔盐浸渍在拟薄水铝石上得到的 Fe 改性氧化铝上获得的(2wt%的 Fe)。催化剂在空气气氛中煅烧,然后用 H 流部分还原,以获得几种 V 和 Fe 物种的混合价态,从而评估 Fe 在 VO/AlO 催化剂中的相互作用并确定其对氧化过程的影响。通过 SEM-EDS、TPR、XRD、拉曼、ATR-FTIR、光致发光、UV-Vis 漫反射和 XPS 光谱测定了结构和光学性质以及表面物种。在氧化脱硫(ODS)和光催化 ODS(PODS)过程中评价了催化性能。实验结果表明,添加 Fe 促进了 ODS 和 PODS 反应的催化活性。与不含 Fe 的 V 催化剂相比,V-Fe 催化剂的 ODS 活性增加了 7.5 倍,最活性的催化剂(V5Fer)对 4,6-DMDBT 的特征氧化时间为 50min。V10Fec 的 PODS 活性与 ODS 活性相同,表明可以在温和条件下氧化二苯并噻吩以获得更低的 S 水平。Fe 的促进作用归因于 Fe 和 Fe 与催化载体的相互作用,有利于表面 V 和 V 物种的分布。此外,Fe 改善了催化剂的光学性质,因为观察到带隙能量降低和电子-空穴对的低复合率。因此,V-Fe 基催化剂在光催化 PODS 过程中是活跃的。