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Recent Advances in Functionalized Mesoporous Silica Frameworks for Efficient Desulfurization of Fuels

机译:功能化介孔二氧化硅骨架用于燃料高效脱硫的最新进展

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摘要

Considerable health and climate benefits arising from the use of low-sulfur fuels has propelled the research on desulfurization of fossil fuels. Ideal fuels are urgently needed and are expected to be ultra-low in sulfur (10–15 ppm), with no greater than 50 ppm sulfur content. Although several sulfur removal techniques are available in refineries and petrochemical units, their high operational costs, complex operational needs, low efficiencies, and higher environmental risks render them unviable and challenging to implement. In recent years, mesoporous silica-based materials have emerged as promising desulfurizing agents, owing to their high porosity, high surface area, and easier functionalization compared to conventional materials. In this review, we report on recent progress in the synthesis and chemistry of new functionalized mesoporous silica materials aiming to lower the sulfur content of fuels. Additionally, we discuss the role of special active sites in these sorbent materials and investigate the formulations capable of encapsulating and trapping the sulfur-based molecules, which are challenging to remove due to their complexity, for example the species present in JP-8 jet fuels.
机译:低硫燃料的使用给健康和气候带来了巨大的好处,推动了对化石燃料脱硫的研究。迫切需要理想的燃料,并且理想的硫含量应非常低(10-15 ppm),硫含量不超过50 ppm。尽管在炼油厂和石化装置中可以使用几种脱硫技术,但其高昂的运营成本,复杂的运营需求,低效率以及更高的环境风险使其难以实施且具有挑战性。近年来,介孔二氧化硅基材料由于具有高孔隙率,高表面积和与常规材料相比更容易官能化的优点,已成为有前途的脱硫剂。在这篇综述中,我们报告了旨在降低燃料硫含量的新型功能化介孔二氧化硅材料在合成和化学领域的最新进展。此外,我们讨论了特殊活性位在这些吸附剂材料中的作用,并研究了能够封装和捕获基于硫的分子的配方,这些分子由于其复杂性而难以去除,例如,JP-8喷气燃料中存在的物种。

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