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钒改性的SBA-15型介孔二氧化硅作为氧化和萃取氧化脱硫过程的催化剂

SBA-15 Type Mesoporous Silica Modified with Vanadium as a Catalyst for Oxidative and Extractive Oxidative Desulfurization Processes.

作者信息

Nurwita Ardian, Stawicka Katarzyna, Trejda Maciej

机构信息

Department of Heterogeneous Catalysis, Faculty of Chemistry, Adam Mickiewicz University in Poznań, Uniwesytetu Poznańskiego 8, 61-614 Poznań, Poland.

出版信息

Materials (Basel). 2024 Aug 14;17(16):4041. doi: 10.3390/ma17164041.

Abstract

One of the current challenges is the reduction of sulfur emitted into the atmosphere, usually in the form of sulfur oxides generated by fossil fuel combustion. To achieve this goal, the sulfur content should be reduced in fuel. In this context, vanadium-containing materials based on SBA-15 mesoporous silica supports and two different sources of vanadium were prepared, characterized, and applied as catalysts for oxidative desulfurization (CODS) and extractive oxidative desulfurization processes (ECODSs). The novelty of this work was the comparative study of vanadium-containing materials in two desulfurization systems. The properties of the catalysts, the concentration and state of vanadium species, and their role in the catalytic process were examined by low-temperature nitrogen physisorption, XRD, UV-Vis, XPS, and chemisorption of pyridine combined with FTIR spectroscopy. The catalytic performance of the material prepared using ammonium metavanadate was superior to that of the catalyst obtained using vanadium(IV) oxide sulfate, which was explained by a higher concentration of vanadium species on the surface of the support and their lower oxidation state in the former. Both types of catalysts showed high activity and stability in the ECODS process.

摘要

当前的挑战之一是减少排放到大气中的硫,通常是以化石燃料燃烧产生的硫氧化物的形式存在。为实现这一目标,应降低燃料中的硫含量。在此背景下,制备了基于SBA-15介孔二氧化硅载体且含有两种不同钒源的含钒材料,对其进行了表征,并将其用作氧化脱硫(CODS)和萃取氧化脱硫工艺(ECODSs)的催化剂。这项工作的新颖之处在于对两种脱硫系统中的含钒材料进行了对比研究。通过低温氮物理吸附、XRD、UV-Vis、XPS以及吡啶化学吸附结合FTIR光谱,研究了催化剂的性能、钒物种的浓度和状态及其在催化过程中的作用。使用偏钒酸铵制备的材料的催化性能优于使用硫酸钒(IV)获得的催化剂,这是由于前者载体表面钒物种的浓度较高且氧化态较低。两种类型的催化剂在ECODS工艺中均表现出高活性和稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0100/11356509/309919bb27a1/materials-17-04041-g001.jpg

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