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The effect of silanol groups on the metal-support interactions in silica-supported cobalt Fischer-Tropsch catalysts. A temperature programmed surface reaction

机译:硅烷醇基团对二氧化硅载钴离丘菌催化剂金属载体相互作用的影响。 温度编程表面反应

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The effect of H bonded and isolated silanol groups on the metal support interactions of SiO2-supported Co catalysts in Fischer-Tropsch (FT) synthesis are reported. SiO2 supports were pre-treated in order to improve the concentration of isolated SiOH on the surface of the SiO2. Isolated SiOH groups act as an aid to achieving relatively good metal dispersions by creating metal anchoring sites, and enhances smaller metal crystallites deposition on the surface of the SiO2. SiO2 supports were pre-treated in two different ways: (a) pre-treatment by thermal method (HT); (b) pre-treatment by ethylene glycol (EG). The incipient wetness impregnation technique was adopted for the preparation of the catalysts, each catalyst loaded with approximately 10 wt% Co on each of the three supports designated as Co/SiO2 - UT, Co/ SiO2 - HT, and Co/SiO2 - EG. Co/SiO2 - UT was used as a reference for this study. A number of characterization methods were applied to study the chemical and physical properties of the supports and the catalysts namely BET, XRD, ICP-OES, FTIR, H-2 chemisorption, TEM, TPR, and TPSR. The results from H-2 chemisorption, TEM and XRD indicated that the Co/SiO2 - EG showed relatively smaller metal crystallites and a better cobalt crystallite dispersion while TPR, CO TPD, and TPSR studies indicated that Co/SiO2 - EG catalyst exhibited stronger metal-support interaction, unlike the other two catalysts. Catalyst evaluation experiments showed that Co/SiO2-HT catalysts showed better FT activity while the Co/SiO2 - EG catalyst favored light olefins. FT catalyst evaluation results were in agreement with the TPSR studies. (C) 2019 Elsevier Inc. All rights reserved.
机译:报道了H键合和分离的硅烷醇基团对Fischer-Tropsch(FT)合成中SiO 2负载的CO催化剂的金属载体相互作用的影响。预先治疗SiO 2支持,以改善SiO 2表面上分离的SiOH的浓度。孤立的SiOH组是通过产生金属锚固位点来实现相对良好的金属分散体,并在SiO 2的表面上增强较小的金属微晶沉积。 SiO2支持以两种不同的方式预处理:(a)通过热法(HT)预处理; (b)通过乙二醇(例如)预处理。采用初期湿润浸渍技术用于制备催化剂,每种催化剂,其中三种载体中的每种催化剂加载为CO / SiO 2 - UT,CO / SiO 2 - HT和CO / SiO2的三种载体中的每一个 - 例如。 CO / SiO2 - UT被用作本研究的参考。应用许多表征方法来研究载体和催化剂的化学和物理性质,即BET,XRD,ICP-OES,FTIR,H-2化学吸附,TEM,TPR和TPSR。 H-2化学吸附,TEM和XRD的结果表明,CO / SiO2 - 例如显示相对较小的金属微晶和更好的钴晶体分散体,而TPR,CO TPD和TPSR研究表明CO / SiO2 - 例如催化剂表现出更强的金属-Support交互,与其他两个催化剂不同。催化剂评价实验表明,CO / SiO2-HT催化剂在CO / SiO 2 - 例如催化剂的光烯烃上显示出更好的FT活性。 FT Catalyst评估结果与TPSR研究一致。 (c)2019 Elsevier Inc.保留所有权利。

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