A Novel Synthetic Nano-Catalyst (Ag2O3/Zeolite) for High Quality of Light Naphtha by Batch Oxidative Desulfurization Reactor

IF 1.3 Q3 ENGINEERING, CHEMICAL
A. Nawaf, Shymaa A. Hameed, Layth T. Abdulateef, A. Jarullah, M. Kadhim, I. Mujtaba
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引用次数: 3

Abstract

Oxidative desulfurization process (ODS), enhanced with a novel metal oxide (Ag ions) as an active component over nano-zeolite that has not been reported in the literature, is used here to improve the fuel quality by removing mercaptan (as a model sulfur compound in the light naphtha). Nano-crystalline (nano-support (Nano-zeolite)) composite is prepared by Incipient Wetness Impregnation method loaded with a metal salt to obtain 0.5, 1 and 1.5% of Ag2O3 over Nano-zeolite. The new homemade nano-catalysts (Ag2O3/Nano-zeolite) prepared are characterized by Brunauer–Emmett–Teller (BET) (surface area, pore volume and pore size), X-ray Diffraction (XRD), Fourier Transform Infra Red (FTIR), and Scanning Electron Microscopy (SEM) analysis. The ODS process is then used to evaluate the performance of the catalysts for the removal of sulfur at different reaction temperatures (80–140 °C) and reaction times (30–50 min) in a batch reactor using the air as oxidant. 87.4% of sulfur removal has been achieved using 1% silver oxide loaded on Nano zeolite (1% of Ag2O3/Nano-zeolite) giving a clear indication that our newly designed catalyst is highly efficient catalyst  in the removal of sulfur compound (mercaptan) from naphtha. A new mechanism of chemical reaction for sulfur removal by oxygen using the new homemade catalyst (Ag2O3/Nano-zeolite) prepared has been suggested in this study. The best kinetic model parameters of the relevant reactions are also estimated in this study using pseudo first order technique based on the experimental results. Copyright © 2021 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0). 
间歇式氧化脱硫反应器制备高质量轻石脑油的新型合成纳米催化剂(Ag2O3/沸石
在文献中未报道的纳米沸石上,用新型金属氧化物(Ag离子)作为活性组分增强氧化脱硫工艺(ODS),通过去除硫醇(作为轻质石脑油中的一种模型硫化合物)来改善燃料质量。通过负载金属盐的初始润湿浸渍法制备纳米晶体(纳米载体(纳米沸石))复合物,在纳米沸石上获得0.5%、1%和1.5%的Ag2O3。通过Brunauer–Emmett–Teller(BET)(表面积、孔体积和孔径)、X射线衍射(XRD)、傅立叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)分析,对自制的新型纳米催化剂(Ag2O3/纳米沸石)进行了表征。然后,在使用空气作为氧化剂的间歇式反应器中,使用ODS工艺评估催化剂在不同反应温度(80–140°C)和反应时间(30–50分钟)下的脱硫性能。使用负载在纳米沸石上的1%氧化银(1%的Ag2O3/纳米沸石)已经实现了87.4%的硫去除,这清楚地表明我们新设计的催化剂是从石脑油中去除硫化合物(硫醇)的高效催化剂。本文提出了用自制的新型催化剂(Ag2O3/纳米沸石)进行氧脱硫化学反应的新机理。根据实验结果,采用拟一阶技术估算了相关反应的最佳动力学模型参数。版权所有©2021作者所有,BCREC集团出版。这是CC BY-SA许可证下的开放访问文章(https://creativecommons.org/licenses/by-sa/4.0)。
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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来源期刊
CiteScore
3.20
自引率
6.70%
发文量
52
审稿时长
12 weeks
期刊介绍: Bulletin of Chemical Reaction Engineering & Catalysis, a reputable international journal, provides a forum for publishing the novel technologies related to the catalyst, catalysis, chemical reactor, kinetics, and chemical reaction engineering. Scientific articles dealing with the following topics in chemical reaction engineering, catalysis science and engineering, catalyst preparation method and characterization, novel innovation of chemical reactor, kinetic studies, etc. are particularly welcome. However, articles concerned on general chemical engineering process are not covered and out of scope of this journal
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