Production of Motor Fuel Components by Processing Vegetable Oils Using a CoMo/Al2O3 Hydrotreating Catalyst and a ZSM-5 Zeolite Catalyst

D. Sosnina, A. Altynov, M. Kirgina, I. Bogdanov
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Abstract

Nowadays, there is a need to search for new renewable energy sources from which it is possible to obtain hydrocarbons that are similar in composition and properties to hydrocarbons of petroleum origin. This is due to a significant increase in demand for natural minerals and, as a consequence, the depletion of their reserves. Today, the most promising alternative renewable energy sources are various vegetable oils, which are used both in their pure form, adding them to commercial mineral fuels, and as products of catalytic processing using various catalysts. However, most studies in the field of alternative energy show that the use of fuels obtained from vegetable oils is limited by their properties as well as the climatic conditions of the areas where biofuels can be used. In this work, we propose an integrated approach to the processing of vegetable oils, which allows us to obtain products of a wide fractional composition with improved operational properties. This approach consists of sequential processing of vegetable oils, first using a CoMo/Al2O3 hydrotreating catalyst in order to obtain classical long-chain hydrocarbons with unsatisfactory properties, and then using a zeolite catalyst, ZSM-5 type, which is characterized by the active occurrence of cracking, isomerization, and aromatization reactions, which are accompanied by a decrease in the length of the hydrocarbon chain of the hydrocarbons obtained during the hydrotreating process and, as a result, improving the physicochemical and low-temperature properties of the resulting processed products.
使用 CoMo/Al2O3 加氢处理催化剂和 ZSM-5 沸石催化剂处理植物油以生产汽车燃料成分
如今,人们需要寻找新的可再生能源,从中获取成分和性质与石油碳氢化合物相似的碳氢化合物。这是因为对天然矿物的需求大幅增加,导致其储量枯竭。如今,最有前途的替代性可再生能源是各种植物油,这些植物油既可以纯植物油的形式使用,也可以添加到商用矿物燃料中,还可以作为使用各种催化剂进行催化加工的产品使用。然而,替代能源领域的大多数研究表明,植物油燃料的使用受到其特性以及生物燃料使用地区气候条件的限制。在这项工作中,我们提出了一种加工植物油的综合方法,通过这种方法,我们可以获得具有更佳操作性能的多种成分的产品。这种方法包括对植物油进行连续加工,首先使用 CoMo/Al2O3 加氢处理催化剂,以获得性能不理想的传统长链烃,然后使用 ZSM-5 型沸石催化剂,该催化剂的特点是裂解、异构化和芳香化作用活跃、ZSM-5 型沸石催化剂的特点是能积极发生裂解、异构化和芳香化反应,同时降低加氢处理过程中获得的碳氢化合物的碳氢链长度,从而改善加工产品的物理化学和低温特性。
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