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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Selective hydrogenation of furfural over Pt based and Pd based bimetallic catalysts supported on modified multiwalled carbon nanotubes (MWNT)
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Selective hydrogenation of furfural over Pt based and Pd based bimetallic catalysts supported on modified multiwalled carbon nanotubes (MWNT)

机译:改性多壁碳纳米管(MWNT)上负载PT基于PT基于PT基于PT基的双金属催化剂的选择性氢化(MWNT)

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摘要

Nano-Pt and Nano-Pd particles were introduced to modified multiwalled carbon nanotubes via co-impregnation method for hydrogenation of furfural in liquid phase using ethanol as a solvent. Different transition metal (Cr, Mn, Fe, Co, Ni) was used as promoters using Pt/MWNT and Pd/MWNT catalysts and various supports were also compared to further investigate the hydrogenation process of furfural. Among the catalysts investigated, Pt-Fe/MWNT (Pt: 0.5 wt%) showed highest conversion and selectivity to furfuryl alcohol (yield of 87.4%), while Pd-Ni/MWNT (Pd: 0.5 wt%) catalysts exhibited the best catalytic performance (83.3% yield of tetrahydrofurfuryl alcohol) under the optimized conditions of 30 bar hydrogen and 5 h, at 100 and 130 degrees C, respectively. Synergistic effect of bimetallic catalysts has been utilized to improve catalytic activity and stability. The extremely active for the selective hydrogenation of furfural over Pt-Fe/MWNT and Pd-Ni/MWNT catalyst might be attributed to active crystal planes exposed over Pt and Pd promoted by Fe and Ni. Catalysts have shown stable activity and selectivity after 5 cycles using Pt-Fe/MWNT and Pd-Ni/MWNT catalysts. Moreover, we suggest that acid sites of conventional supports might have an impact on furfural conversion.
机译:将纳米Pt和纳米Pd颗粒引入改性多壁碳纳米管,通过乙醇作为溶剂氢化糠醛填充糠醛。使用不同的过渡金属(Cr,Mn,Fe,Co,Ni)作为使用Pt / MWNT和Pd / MWNT催化剂的启动子,并且还将各种载体进行比较,以进一步研究糠醛的氢化过程。研究的催化剂中,Pt-Fe / MWNT(Pt:0.5wt%)显示出最高的转化率和选择性与糠醇(产率为87.4%),而PD-Ni / MWNT(Pd:0.5wt%)催化剂表现出最佳催化剂在30巴氢的优化条件下,分别在30巴氢的优化条件下(分别为100和130℃。二管催化剂的协同效应已被利用以改善催化活性和稳定性。通过PT-Fe / MWNT和Pd-Ni / MWNT催化剂的糠醛选择性氢化极其活性可归因于通过Fe和Ni促进的Pt和Pd暴露的活性晶体平面。催化剂在使用PT-Fe / MWNT和PD-Ni / MWNT催化剂的5次循环后显示出稳定的活性和选择性。此外,我们建议常规支撑件的酸部位可能对糠醛转化产生影响。

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