Hamidi Roya, Khoshbin Reza, Karimzadeh Ramin
Chemical Engineering Faculty, Tarbiat Modares University P. O. Box 14115-114 Tehran Islamic Republic of Iran
Department of Chemical and Materials Engineering, Buein Zahra Technical University Buein Zahra Qazvin Iran.
RSC Adv. 2020 Mar 26;10(21):12439-12450. doi: 10.1039/d0ra01590c. eCollection 2020 Mar 24.
Novel bimetallic NiMo/AlO nanocatalysts were fabricated a solution combustion method to evaluate the role of fuel to oxidant molar ratios on their structural properties and hydrodesulfurization activity. The citric acid/oxidant ratios of 0.5, 1, 2 and 4 were selected to address the optimum ratio. Characterization results demonstrated that the content of citric acid considerably influenced the morphological and textural properties of the nanocatalysts. Such morphology modification is attributed to the consequent difference of the effluent exhaust gas during combustion. We show that with our method a relatively homogeneous distribution of the active material over the support can be achieved. The obtained data from N adsorption-desorption analysis illustrated that at a fuel/oxidant ratio of 4 the external and surface area were 2.1 and 1.5 times more than the corresponding one in the fuel/oxidant ratio of 0.5, respectively. Furthermore, a higher amount of fuel can improve the catalyst reducibility by decreasing the interaction of metal active phase with the support surface. The catalytic performance of sulfided nanocatalysts is evaluated in a slurry reactor, operated at ambient pressure using high thiophene contamination as a model fuel. The solution combustion synthesis method was able to remove 100% of the sulfur compound in the reaction medium.
采用溶液燃烧法制备了新型双金属NiMo/AlO纳米催化剂,以评估燃料与氧化剂摩尔比对其结构性能和加氢脱硫活性的作用。选择柠檬酸/氧化剂比为0.5、1、2和4来确定最佳比例。表征结果表明,柠檬酸的含量对纳米催化剂的形貌和织构性能有显著影响。这种形貌的改变归因于燃烧过程中排出废气的差异。我们表明,通过我们的方法可以在载体上实现活性材料相对均匀的分布。N吸附-脱附分析得到的数据表明,在燃料/氧化剂比为4时,外表面积和比表面积分别是燃料/氧化剂比为0.5时相应值的2.1倍和1.5倍。此外,较高的燃料用量可以通过减少金属活性相与载体表面的相互作用来提高催化剂的可还原性。在常压下使用高噻吩污染的模型燃料在淤浆反应器中评估硫化纳米催化剂的催化性能。溶液燃烧合成法能够去除反应介质中100%的硫化合物。