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Mesoporous superacid catalysts for valorisation of refinery naphtha stream

机译:炼油厂石脑油易化催化剂催化剂

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摘要

In the current petroleum refining scenario, many refineries end up with surplus naphtha which is either absorbed into the gasoline pool or exported at unattractive prices. Therefore, several options for naphtha valorisation are currently being explored. The usage of Liquified Petroleum Gas (LPG) as a fuel in heating appliances, cooking equipment and automobiles is rapidly increasing. The high specific calorific value, high octane number, clean and efficient combustion of LPG distinguish it as an extremely promising fuel of the future. In the current work, tungstophosphoric acid (TPA) supported on four different mesoporous silica supports were investigated as mesoporous superacids for hydroconversion of refinery naphtha using n-heptane as a model feedstock. The varied levels of interactions of prepared mesoporous silica with tungstophosphoric acid catalysts were observed to have a prominent effect on the strength of the acid sites generated on silica surfaces and as a result affected heptane hydroconversion activity and selectivity of isomerized and cracked products. Interestingly, activity could be tuned towards selective cracking or isomerization-cracking by selection of a suitable topology of mesoporous silica. Hexagonal Mesoporous Silica (HMS) and plugged SBA-15 supported TPA catalysts demonstrated high n-heptane conversion activity and isomerization selectivity whereas KIT-6 and SBA-15 supported TPA catalysts demonstrated high cracking selectivity to LPG.
机译:在目前的石油精炼情景中,许多炼油厂最终有剩余石脑油,它们被吸收到汽油池中或以没有吸引力的价格出口。因此,目前正在探索若干石脑油储灵选项。使用液化石油气(LPG)作为加热设备,烹饪设备和汽车的燃料正在迅速增加。 LPG的高特异性热值,高辛烷值,清洁和有效的燃烧将其与未来的极其有前途的燃料区分开来。在当前的工作中,研究了四种不同介孔二氧化硅载体的钨磷酸(TPA)作为使用正庚烷作为模型原料的炼油石脑油的中孔过多的超级酸。观察到具有钨磷酸催化剂的制备的中孔二氧化硅的各种相互作用水平对二氧化硅表面产生的酸位的强度具有突出的影响,结果受到影响的庚烷水电转化活性和异构化和破裂产物的选择性。有趣的是,通过选择介孔二氧化硅的合适拓扑可以调整活性朝着选择性开裂或异构化破裂。六角形介孔二氧化硅(HMS)和堵塞的SBA-15负载的TPA催化剂表现出高正庚烷转化活性和异构化选择性,而试剂盒-6和SBA-15负载的TPA催化剂表现出高裂缝的选择性对LPG。

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  • 来源
    《RSC Advances 》 |2018年第59期| 共8页
  • 作者单位

    Hindustan Petr Green Res &

    Dev Ctr Bangalore Karnataka India;

    Hindustan Petr Green Res &

    Dev Ctr Bangalore Karnataka India;

    Hindustan Petr Green Res &

    Dev Ctr Bangalore Karnataka India;

    Hindustan Petr Green Res &

    Dev Ctr Bangalore Karnataka India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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