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首页> 外文期刊>Fuel >Effects of the Ni-Mo ratio on olefin selective hydrogenation catalyzed on Ni-Mo-S active sites: A theoretical study by DFT calculation
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Effects of the Ni-Mo ratio on olefin selective hydrogenation catalyzed on Ni-Mo-S active sites: A theoretical study by DFT calculation

机译:Ni-Mo比对Ni-MO-S活性位点催化烯烃选择性氢化的影响:DFT计算的理论研究

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摘要

The hydrogenation saturation of olefin in heavy naphtha components is significant for hydrocracking production. The substantial aromatic compounds in the products severely hinder the hydrogenation saturation of olefins due to the strong competitive adsorptions on the active sites. To identify a suitable Ni-Mo ratio for weakening the competitive adsorption, a series of Ni-Mo-S model nanoclusters with various Ni-Mo ratios on the edges are established. Coordinatively unsaturated active sites (CUSs) are created; competitive adsorption data of 3-ethyl-1-hexene (3-E-1-H), 3-ethyl-2-hexene (3-E-2-H), meta-xylene (m-xylene), 2,5-dimethylnaphthalene (2,5-DMA) and anthracene (ANT) are obtained; and the hydrogenation saturation of olefins on these edges is calculated. The results demonstrate that the lowering of the H2S desorption energy by the Ni atoms on the edges is favorable for CUS creation. Ni atoms also modify the structure and the orbital properties of the CUS such that the hydrogenation reactants are easier to adsorb. A moderate Ni-Mo ratio will enhance the adsorption of the olefin, whereas an excessively large Ni-Mo ratio will lead to stronger aromatic competitive adsorptions on both the S-edge and the Mo-edge. Moderate Ni addition could effectively promote hydrogen activation and transportation, which are the essential elementary reactions of the olefin saturation. It is inferred that a lower Ni-Mo ratio for the posthydrotreating catalyst may be favorable for olefin selective saturation.
机译:重型石脑油组分中烯烃的氢化饱和度对加氢裂化产生显着。产品中的大量芳族化合物由于活性位点上的强竞争性吸附而严重阻碍烯烃的氢化饱和度。为了鉴定用于削弱竞争吸附的合适的Ni-Mo比,建立了一系列具有各种Ni-Mo比率的Ni-Mo-S型纳米团簇。创建协调不饱和活性位点(CASS); 3-乙基-1-己烯(3-E-1-H),3-乙基-2-己烯(3-E-2-H),Meta-二甲苯(M-二甲苯),2,5的竞争性吸附数据,2,5 - 获得 - 二甲基萘(2,5-DMA)和蒽(Ant);计算这些边缘上的烯烃的氢化饱和度。结果表明,边缘上的Ni原子的H2S解吸能降低是有利于CUS创造的。 Ni原子还改变CU的结构和轨道性质,使得氢化反应物更容易吸附。适度的Ni-Mo比率将增强烯烃的吸附,而过大的Ni-Mo比率将导致S边缘和Mo缘上的芳族竞争吸附更强。中等Ni添加可以有效地促进氢激活和运输,这是烯烃饱和度的基本基本反应。推断术术催化剂的较低Ni-Mo比可能有利于烯烃选择性饱和度。

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  • 来源
    《Fuel》 |2020年第1期|118136.1-118136.10|共10页
  • 作者单位

    SINOPEC Dalian Res Inst Petr & Petrochem Dalian 116041 Peoples R China;

    SINOPEC Dalian Res Inst Petr & Petrochem Dalian 116041 Peoples R China;

    SINOPEC Dalian Res Inst Petr & Petrochem Dalian 116041 Peoples R China;

    SINOPEC Dalian Res Inst Petr & Petrochem Dalian 116041 Peoples R China;

    SINOPEC Dalian Res Inst Petr & Petrochem Dalian 116041 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ni-Mo-S; Olefin; Aromatic compound; Competitive adsorption; CUS;

    机译:Ni-Mo-s;烯烃;芳香族化合物;竞争吸附;CUS;

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