A Review of Nano-catalyst Applications in Kerosene Desulfurization Techniques

Sahar Abd Zaid, A. AbdulRazak, M. Abid
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Abstract

The production of clean liquid fuels is critical to maintaining a healthy life and environment around the world. To meet the new sulfur standard requirements, sulfur compounds must be effectively and completely removed from fuel oil. Therefore, researchers' attention turned to research into different techniques to remove sulfur from kerosene. This review focused on discussing a variety of catalysis approaches and emerging technologies for ultra-deep desulfurization of refinery streams for ultralow sulfur, such as hydrodesulfurization, catalytic-oxidative desulfurization, and adsorption desulfurization to form clean liquid fuels. This review discusses the most important industrial parameters that influence sulfur removal processes and has focused primarily on the main role of the catalyst and its type in impacting the efficiency of the process. Also, it will discuss the concepts of nano-catalysts, their preparation methods, and the most common forms, were described such as graphene, carbon nano-tubes (CNTs), metal-organic frames (MOVs), and zeolites. A comparison between the nano-catalyst and the conventional catalyst was also discussed to show the great effect of the nano-catalyst in improving the removal processes, which will lead to the development of innovative, efficient desulfurization methods that produce zero-sulfur fuels. In addition, understanding the most important challenges in nano-catalysts.
纳米催化剂在煤油脱硫技术中的应用综述
清洁液体燃料的生产对于维持世界各地的健康生活和环境至关重要。为了满足新硫标准的要求,必须有效、彻底地去除燃料油中的含硫化合物。因此,研究人员的注意力转向研究从煤油中去除硫的不同技术。本文综述了炼化废水超低硫超深度脱硫的各种催化方法和新兴技术,如加氢脱硫、催化氧化脱硫和吸附脱硫,以形成清洁的液体燃料。本文讨论了影响脱硫过程的最重要的工业参数,并重点介绍了催化剂及其类型在影响脱硫过程效率方面的主要作用。此外,它将讨论纳米催化剂的概念,它们的制备方法,以及最常见的形式,如石墨烯,碳纳米管(CNTs),金属有机框架(MOVs)和沸石。通过对纳米催化剂和常规催化剂的比较,表明纳米催化剂在改善脱除过程方面的巨大作用,这将导致开发创新的、高效的脱硫方法,从而生产零硫燃料。此外,了解纳米催化剂中最重要的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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