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The effect of Cu loading on Ni/carbon nanotubes catalysts for hydrodeoxygenation of guaiacol

机译:Cu载荷对Ni /碳纳米管催化剂对愈高氢酰基的催化剂

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Commercial carbon nanotubes (CNT), were used as supports to prepare Ni/CNT catalysts with a 15 wt% Ni loading and NiCu _( x ) /CNT catalysts with Cu loadings of x : 1.5, 2.25, 3.0 and 3.75 wt% were prepared. The catalysts were characterized by N _(2) physisorption, H _(2) -temperature programmed reduction (TPR), transmission electron microscopy (TEM), STEM-HAADF and X-ray photoelectron spectra (XPS), and they were evaluated in the conversion of guaiacol at 573 K and 5 MPa H _(2) pressure for 4 h in a batch reactor. The characterization showed that Ni–Cu alloys were formed which existed along with Ni, Cu and NiO entities. The Ni metallic particle size was lower upon increasing Cu content, however the increased proportion of NiO species and the coverage of Ni sites with Cu diminished the intrinsic activity. The addition of Cu also decreased the hydrogenolysis and deoxygenation ability for the catalysts up to 3 wt% of Cu, which can be related to the lower size of Ni ensembles. Beyond that percentage, the selectivity was modified and it was attributed to changes in the Ni dispersion.
机译:使用商业碳纳米管(CNT)作为支撑载体,以制备Ni / CNT催化剂的15wt%Ni负载和Nicu _(X)/ CNT催化剂,制备Cu载荷的Cu载荷,制备X:1.5,2.25,3.0和3.75wt% 。催化剂的特征在于N _(2)理由,H _(2) - 高温编程(TPR),透射电子显微镜(TEM),茎HAADF和X射线光电子谱(XPS),并进行了评估在分批反应器中,在573k和5MPa H _(2)的压力下将GuaiaCol转化为4小时。表征显示,形成与Ni,Cu和NiO实体一起存在的Ni-Cu合金。在增加Cu含量时,Ni金属粒径较低,但是NiO物种比例增加和Ni位点与Cu的覆盖率降低了内在活性。 Cu的加入也降低了催化剂的氢解和脱氧能力,得到3wt%的Cu,其可以与Ni合奏的较低尺寸有关。超出该百分比,选择性被修改,并且归因于NI分散的变化。

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