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首页> 外文期刊>Chemical engineering journal >Ultrafast desulfurization of diesel oil with ionic liquid based PMoO catalysts and recyclable NaClO oxidant
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Ultrafast desulfurization of diesel oil with ionic liquid based PMoO catalysts and recyclable NaClO oxidant

机译:柴油与离子液体PMOO催化剂的超快脱硫和可回收Naclo氧化剂

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摘要

Sodium hypochlorite (NaClO) is a strong oxidant with facile electrochemical regenerability whereby a sustainable oxidative desulfurization (ODS) process of fuel may be viable. Here, a ultrafast deep ODS process was proposed by using ionic liquid (IL) catalyst and NaClO oxidant, and its catalytic mechanism was studied through GC-MS, FTIR, and in-situ ESR technique. The results show that the IL with C-16 alkyl groups makes the amphiphilic catalysts oil dispersible, and the catalytic activity of the imidazolium is higher than that of pyridinium and ammonium based IL catalysts. Dibenzothiophene (DBT) in model oil and real diesel can be oxidized completely within 30 min, and 99% of catalytic performance can be remained after 8 recycled uses. Under the catalysis of [C16MIM][PMoO], NaClO is firstly decomposed into radical oxygen species of center dot O-2(-) and center dot OH that oxidize Mo = O of the catalyst to its peroxide form Mo(O-2), whereby DBT was oxidized into DBTO2. The present ultrafast and sustainable ODS process is perspective for industrial application, and the oxidation mechanism revealed here is instructive for ODS of fuel and other catalytic oxidation reactions.
机译:次氯酸钠(NaClO)是具有容易的电化学再生性的强氧化剂,由此可持续的氧化脱硫(ODS)燃料过程可以是可行的。这里,通过使用离子液体(IL)催化剂和Naclo氧化剂提出超快深度ODS过程,并通过GC-MS,FTIR和原位ESR技术研究其催化机理。结果表明,具有C-16烷基的IL使得两亲型催化剂油可分散,咪唑鎓的催化活性高于吡啶鎓和基于氨基催化剂的催化活性。在模型油和真实柴油中的二苯甲酸丁烯(DBT)可以完全在30分钟内完全氧化,并且在8次再循环用途后,催化性能的99%可以保持。在[C16MIM] [PMOO]的催化下,NaClO首先分解为中心点O-2( - )和中心点OH的激进氧物种,其将催化剂的Mo = O氧化成其过氧化物形式(O-2) ,即DBT被氧化成DBTO2。本发明的超快和可持续消耗性ODS过程是工业应用的透视,这里揭示的氧化机制是对燃料的消耗臭氧层物质和其他催化氧化反应的指导性。

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