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Tailoring NiMo-Based Catalysts for Production of Low-Viscosity Sustainable Hydrocarbon Bases for Drilling Muds from Secondary Gas Oils

机译:定制镍基催化剂,用于生产用于二次瓦斯油钻井泥浆的低粘度可持续碳氢化合物碱

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This article presents the prospect of using the process of deep hydrodesulfurization and hydrodearomatization of secondary gas oils using highly active NiMo catalysts to obtain hydrocarbon bases for drilling fluids. Catalysts were synthesized using PMo heteropolyanions, citric acid, and diethylene glycol on alumina carriers with different pore volumes. This study showed that the concentration of the impregnating solution affects the composition and morphology of the active phase particles of the prepared catalyst, while the textural characteristics of the carrier influence the physicochemical properties and catalytic activity of the NiMo/Al2O3 catalysts. The catalyst that was synthesized using a carrier with the largest pore volume and an effective diameter of more than 7 nm exhibited the highest activity. It was demonstrated that the use of such a catalyst allows for the procurement of hydrocarbon bases for drilling fluids from mixtures of secondary gas oils at a hydrogen pressure of 15-20 MPa. This study has practical significance for the development of sustainable and economically efficient methods for the utilization of low-quality petroleum gas oils to produce high-margin environmentally friendly non-fuel petroleum products, as well as contributes to the development of economically efficient technologies for the utilization of petroleum raw materials.
机译:本文介绍了利用高活性NiMo催化剂对次级瓦斯油进行深度加氢脱硫和加氢脱芳构化工艺获得钻井液烃类基础的前景。利用PMo杂多阴离子、柠檬酸和二甘醇在不同孔容的氧化铝载体上合成催化剂。研究表明,浸渍液的浓度影响着催化剂活性相颗粒的组成和形貌,而载体的织构特性则影响着NiMo/Al2O3催化剂的理化性质和催化活性。使用孔容最大、有效直径大于7 nm的载体合成的催化剂活性最高。结果表明,使用这种催化剂可以在15-20 MPa的氢压下从二次瓦斯油混合物中获取用于钻井液的碳氢化合物碱。本研究对开发可持续、经济高效的低质量石油瓦斯油生产高利润、环保型非燃料石油产品的方法具有现实意义,也有助于开发经济高效的石油原料利用技术。

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