Electrocatalytic Hydrogenation of 5‐Hydroxymethylfurfural in Acidic Solution
Электрокаталитическое гидрирование 5-гидроксиметилфурфурола в кислой среде
2015-04-23
SCID: 54.1/qtw6t4y9
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5-hydroxymethylfurfural (HMF)acidic solutionelectrocatalytic hydrogenationfuran-ring hydrogenationsolid metal electrodes
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Abstract (AI)
Electrocatalytic hydrogenation of 5-hydroxymethylfurfural (HMF) is studied on solid metal electrodes in acidic solution (0.5 M H2 SO4 ) by correlating voltammetry with on-line HPLC product analysis. Three soluble products from HMF hydrogenation are distinguished: 2,5-dihydroxymethylfuran (DHMF), 2,5-dihydroxymethyltetrahydrofuran (DHMTHF), and 2,5-dimethyl-2,3-dihydrofuran (DMDHF). Based on the dominant reaction products, the metal catalysts are divided into three groups: (1) metals mainly forming DHMF (Fe, Ni, Cu, and Pb), (2) metals forming DHMF and DMDHF depending on the applied potentials (Co, Ag, Au, Cd, Sb, and Bi), and (3) metals forming mainly DMDHF (Pd, Pt, Al, Zn, In, and Sb). Nickel and antimony are the most active catalysts for DHMF (0.95 mM cm(-2) at ca. -0.35 VRHE and -20 mA cm(-2) ) and DMDHF (0.7 mM cm(-2) at -0.6 VRHE and -5 mA cm(-2) ), respectively. The pH of the solution plays an important role in the hydrogenation of HMF: acidic condition lowers the activation energy for HMF hydro-genation and hydrogenates the furan ring further to tetrahydrofuran.
Key Findings
1
Acidic conditions lower the activation energy for HMF hydrogenation and promote further hydrogenation of the furan ring to tetrahydrofuran.
2
Antimony is the most active catalyst for DMDHF, reaching 0.7 mM cm−2 at −0.6 V_RHE and −5 mA cm−2.
3
Electrocatalytic HMF hydrogenation in 0.5 M sulfuric acid produces three soluble products: DHMF, DHMTHF, and DMDHF.
4
Metal electrodes fall into three groups according to dominant products: DHMF-forming, potential-dependent DHMF/DMDHF-forming, and mainly DMDHF-forming catalysts.
5
Nickel is the most active catalyst for DHMF, reaching 0.95 mM cm−2 at approximately −0.35 V_RHE and −20 mA cm−2.
Research Object
5-hydroxymethylfurfural (HMF) undergoing electrocatalytic hydrogenation on solid metal electrodes in acidic aqueous solution
Research Subject
The influence of metal catalyst identity, applied potential, current density, and solution pH on HMF hydrogenation activity, selectivity, and product formation
Publication Details
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2015-04-23
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