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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Effect of H2S on the mechanisms of naphthene ring opening and isomerization over Ir/NaY: A comparative study of decalin, perhydroindan and butylcyclohexane hydroconversions
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Effect of H2S on the mechanisms of naphthene ring opening and isomerization over Ir/NaY: A comparative study of decalin, perhydroindan and butylcyclohexane hydroconversions

机译:H2S对萘芬环开口机制的影响IR / NAY:癸蛋白,Perhydroindan和丁基环己烷水电片的比较研究

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Selective ring opening is an important hydrotreating process for gas oil upgrading. In this work, we have used an Ir/NaY bifunctional catalyst-highly efficient in sulfur-free conditions-as a reference system to assess the effect of H2S impurity concentration (0-1 %) on the kinetics and mechanisms of naphthene conversion under high hydrogen pressure (5 MPa). Three model naphthenic molecules (decalin, perhydroindan and butylcyclohexane) were compared to evaluate the influence of the ring size (C5 vs C6) and number (1 vs 2). The numerous reaction products were identified, quantified and classified by using two-dimensional gas chromatography (GC x GC). In the absence of sulfur, it is confirmed that C5 rings are opened faster than C6 rings, and that single-ring naphthenes are converted faster than double-ring naphthenes. The presence of H2S, even at concentrations as low as 30 ppm, drastically and irreversibly changes the dominant catalytic function (from metallic to acidic), mechanism (from dicarbene-mediated to carbocation rearrangement) and family of products (from ring-opening products to skeletal-isomerization products). Together with experiments at variable reactant conversion, these results allow us to propose mechanistic reaction schemes for the three naphthenes under similar conditions, both for sulfur-free and sulfur-rich atmospheres.
机译:选择性环开口是燃气升级的重要加氢处理方法。在这项工作中,我们使用了IR / NAY双官能催化剂 - 高效的无硫条件 - 作为参考系统,以评估H2S杂质浓度(0-1%)对高温下环萘转化率的动力学和机制的影响。氢气压力(5MPa)。将三种模型环烷烃分子(癸酰蛋白,perhydroindan和丁基环己烷)进行比较,以评价环尺寸(C5 Vs C6)和数量(1Vs 2)的影响。通过使用二维气相色谱(GC X GC)来鉴定,定量,定量和分类许多反应产物。在没有硫的情况下,证实C5环比C6环更快地打开,并且单环上萘酮被转化得比双环环萘。甚至在浓度低至30 ppm的浓度下,均匀且不可逆地改变了显性催化功能(从金属到酸性),机制(从二碳酯介导的碳分布重排)和家族(从开环产品中)骨骼异构化产品)。与实验一起进行可变反应物转化,这些结果允许我们在类似条件下提出三种环烷烃的机械反应方案,无论是无硫和富含硫的大气。

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