首页> 外文期刊>Journal of Catalysis >The Relationship between the Structure of NiMo/SiO_2 Catalyst Precursors Prepared in the Presence of Chelating Ligands and the Hydrodesulfurization Activity of the Final Sulfided Catalysts
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The Relationship between the Structure of NiMo/SiO_2 Catalyst Precursors Prepared in the Presence of Chelating Ligands and the Hydrodesulfurization Activity of the Final Sulfided Catalysts

机译:螯合配体存在下制备的NiMo / SiO_2催化剂前体的结构与最终硫化催化剂的加氢脱硫活性之间的关系

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The structure of nickel and molybdenum in silica-supported NiMo catalyst precursors, modified by the addition of various chelating ligands, was studied by means of X-ray, Raman, and UV-VIS spectroscopy. Thiophene hydrodesulfurization tests showed that a wide variety of ligands have a beneficial effect on the performance of the sulfided catalysts. The activity of catalysts prepared with nitrilotriacetic acid (NTA) and ethylenediamine (EN) was measured as a function of the ligand to Ni ratio in the catalyst precursors as well. EN gradually causes an improvement of the catalytic activity when the EN/Ni molar ratio increases from 0 to 4, while the best result for NTA is obtained when the NTA/Ni ratio is 1.5. UV-VIS spectra of NiMoEN impregnation solutions and dried catalysts showed that some EN is removed from the first coordination sphere of Ni during the drying procedure. Ni K-edge extended X-ray absorption fine structure (EXAFS) proved the presence of a Ni-Si shell and, thus, of Ni-SiO_2 interactions in the catalyst precursors prepared without ligands. These interactions disappeared gradually with increasing amounts of the ligand. Raman spectroscopy and Mo K-edge EXAFS showed that Mo is present on the support as a mixture of MoO_4~(2-) and polymolybdate clusters. Raman spectroscopy also suggested that these polymolybdate clusters interact with the support. Mo K-edge EXAFS spectra showed that EN has very little effect on Mo, whereas at NTA concentrations higher than 1 the [MoO_3(NTA)]~(3-) complex is formed. The increase in activity obtained with EN and NTA is attributed to the elimination of Ni-SiO_2 interactions and to the presence of the ligands in the Ni coordination sphere, whereas the decrease in activity observed in catalysts with NTA/Ni ratios above 2 is explained by the formation of [MoO_3(NTA)]~(3-).
机译:通过X射线,拉曼光谱和UV-VIS光谱研究了二氧化硅负载的NiMo催化剂前体中镍和钼的结构,并通过添加各种螯合配体对其进行了改性。噻吩加氢脱硫试验表明,各种各样的配体对硫化催化剂的性能都有有益的影响。还测量了由次氮基三乙酸(NTA)和乙二胺(EN)制备的催化剂的活性,该活性也随催化剂前体中配体与Ni的比例而变化。当EN / Ni摩尔比从0增加到4时,EN逐渐引起催化活性的提高,而当NTA / Ni比为1.5时,获得NTA的最佳结果。 NiMoEN浸渍溶液和干燥催化剂的UV-VIS光谱表明,在干燥过程中,某些镍从Ni的第一配位球中被去除。 Ni K边缘扩展X射线吸收精细结构(EXAFS)证明了在没有配体的情况下制备的催化剂前体中存在Ni-Si壳,因此存在Ni-SiO_2相互作用。随着配体的增加,这些相互作用逐渐消失。拉曼光谱和Mo K边缘EXAFS表明,Mo以MoO_4〜(2-)和多钼酸盐簇的混合物形式存在于载体上。拉曼光谱法还表明这些多钼酸盐簇与载体相互作用。 Mo K-edge EXAFS光谱表明,EN对Mo的影响很小,而NTA浓度高于1时,会形成[MoO_3(NTA)]〜(3-)络合物。 EN和NTA的活性增加归因于Ni-SiO_2相互作用的消除和Ni配位体中配体的存在,而NTA / Ni比率大于2的催化剂中活性的降低解释为[MoO_3(NTA)]〜(3-)的形成。

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