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水对高硫直馏油馏分非催化氧化脱硫的影响

Influence of Water on Noncatalytic Oxidative Desulfurization of High-Sulfur Straight-Run Oil Fractions.

作者信息

Pyshyev Serhiy, Korchak Bohdan, Miroshnichenko Denis, Vytrykush Nataliya

机构信息

Lviv Polytechnic National University, 12 Bandera St., Lviv79013, Ukraine.

National Technical University, Kharkiv Polytechnic Institute, 2 Kyrpychova St., Kharkiv61002, Ukraine.

出版信息

ACS Omega. 2022 Jul 25;7(30):26495-26503. doi: 10.1021/acsomega.2c02527. eCollection 2022 Aug 2.

Abstract

The noncatalytic oxidative desulfurization process of straight-run kerosene and diesel fractions with high sulfur contents due to their treatment with air without using expensive catalysts and strong oxidants is considered. The research was carried out in a periodic mode in a bubble-type reactor with a volume of 1 × 10 m under the following conditions: 180-200 °C; 2.5-3.0 MPa; the process lasted for 20-30 min; the air/raw material ratio was 1.6-2.2 m/min per 1 m of raw material. The process can be used to obtain industrial jet fuels and diesel fuel components with good lubricating properties. The possibility and expediency of carrying out the process in the presence of water have been studied. The ratio of water/raw materials (vol.) varied from 0:1 to 2:1. It was proven that the water presence in the reaction medium has a positive effect on the studied process and decreases the oxidation intensity of hydrocarbon medium by 2-4 times. This is due to both the slowing of oxidation reactions by water during peroxide decomposition and chain growth and branching and the partial change in chemical oxidation with the formation of phenols and/or tertiary alcohols, which are inhibitors of oxidation reactions. On the other hand, water has almost no effect on the removal degree of sulfur compounds.

摘要

考虑了对直馏煤油和高硫柴油馏分进行非催化氧化脱硫的过程,该过程通过在不使用昂贵催化剂和强氧化剂的情况下用空气处理来实现。研究在容积为1×10立方米的鼓泡式反应器中以间歇模式进行,条件如下:180 - 200℃;2.5 - 3.0兆帕;过程持续20 - 30分钟;空气与原料的比例为每1立方米原料1.6 - 2.2立方米/分钟。该过程可用于获得具有良好润滑性能的工业喷气燃料和柴油燃料组分。研究了在有水存在的情况下进行该过程的可能性和适宜性。水与原料的比例(体积比)从0:1变化到2:1。已证明反应介质中存在水对所研究的过程有积极影响,并使烃类介质的氧化强度降低2 - 4倍。这是由于在过氧化物分解以及链增长和分支过程中,水减缓了氧化反应,并且化学氧化部分发生变化,形成了酚类和/或叔醇,它们是氧化反应的抑制剂。另一方面,水对硫化合物的去除程度几乎没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e029/9352224/701f8555a148/ao2c02527_0002.jpg

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