NbFAPSO-5原位加氢脱除催化裂化汽油中的硫化物和苯

N. Mominou, Lei Wang, Badohok Sarki
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摘要

采用水热法合成了AlPO-5型结构的含铌磷酸铝分子筛(nbapso -5)。通过x射线衍射确定其结构,电感耦合等离子体原子发射光谱(ICP-AES)测定其元素组成,红外光谱(IR)测定其酸性。x射线衍射图很好地证实了AlPO-5型结构。ICP-AES分析证实AlPO-5骨架中含有硅(12.9%)、铝(15.4%)、磷(21.9%)、铁(5.62%)和铌(0.39%)。红外光谱分析表明,合成样品中存在Bronsted位点和Lewis位点。用固定床反应器考察了所制催化剂在催化裂化汽油中硫化物和苯的脱除活性。在金属负荷15%、反应温度423K、反应时间30 min、空速3 h-1、反应压力1 MPa的适宜条件下;脱硫率达100%,脱苯率达19.9%。研究汽油的辛烷值提高了两个单位。这种显著的行为使nbapso -5家族成为清洁燃料催化剂工业应用的潜在候选者。
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Removal of Sulphides and Benzene in Fluid Catalytic Cracking Gasoline by Insitu Hydrogenation Over NbFAPSO-5
Niobium containing aluminophosphate molecular sieve (NbFAPSO-5) was hydrothermally synthesized with AlPO-5 type structure. Characterization of this catalyst was performed by X-ray diffraction to determine its structure, inductive coupled plasma-atomic emission spectrometry (ICP-AES) for its elemental composition and infrared spectrometry (IR) to access its acidic properties. X-ray diffraction patterns confirmed well AlPO-5 type structure. ICP-AES analysis confirmed the incorporation of silicon (12.9%), aluminium (15.4%), phosphorous (21.9%), iron (5.62%) and niobium (0.39%) into AlPO-5 framework. Infrared spectrometry analysis showed that both Bronsted and Lewis sites were found in the synthesized sample. A fixed-bed reactor was used to investigate the activity of the resulting catalysts in the removal of sulfides and benzene in fluid catalytic cracking gasoline. Under suitable conditions of a metal loading of 15%, a reaction temperature of 423K, a reaction time of 30 min, a space velocity of 3 h-1, and a reaction pressure of 1 MPa; desulfurization and debenzolization ratios reach 100% and 19.9% respectively. Research octane number of the gasoline increased by two units. This remarkable behavior makes NbFAPSO-5 family, a potential candidate for industrial application as catalysts in the clean fuel.
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