Biomass upgrading of furfural to cyclopentanone via selective aqueous-phase hydrogenative rearrangement over Pd/g-C3N4 catalysts

被引:0
作者
Zhang, Shihao [1 ]
Xu, Ruilin [1 ]
Meng, Chen [1 ]
Zhang, Yiwen [1 ]
Hu, Weiran [1 ]
Gao, Xing [2 ]
Yang, Dan [1 ]
Wan, Xiaoyue [1 ]
Zhou, Chunmei [1 ]
Kustov, Leonid M. [3 ]
Yang, Yanhui [1 ]
Dai, Yihu [1 ]
机构
[1] Nanjing Tech Univ, Inst Adv Synth, Sch Chem & Mol Engn, Nanjing 211816, Peoples R China
[2] Huainan Normal Univ, New Energy Mat & Technol Res Ctr, Huainan Res Ctr New Carbon Energy Mat, Anhui Prov Key Lab Low Temp Cofired Mat,Anhui Engn, Huainan 232038, Peoples R China
[3] MV Lomonosov Moscow State Univ, Dept Chem, Moscow 119991, Russia
基金
中国国家自然科学基金;
关键词
Biomass upgrading; Furfural; Cyclopentanone; Selective hydrogenation; Ring-rearrangement; CHEMOSELECTIVE HYDROGENATION; CARBON NITRIDE; RING-REARRANGEMENT; CONVERSION; ACID; NANOPARTICLES; CHEMICALS; ALCOHOL; SOLVENT; MECHANISM;
D O I
10.1016/j.cej.2025.159752
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The monometallic Pd/g-C3N4 catalysts were synthesized and applied in aqueous-phase hydrogenative rearrangement of furfural (FFR) to cyclopentanone (CPO) for biomass upgrading. Their structure-performance relationship has been investigated by combining structural characterizations and kinetic measurements. The Pd-g-C3N4 interfaces prefer single electron transfer property due to the modification of N species, and thus Pd/gC3N4 catalysts with regulated electronic property of Pd sites can suppress the side-reaction pathway of over- hydrogenation of furfuryl alcohol (FAL) to tetrahydrofurfuryl alcohol (THFAL). Commercial 5%Pd/C catalyst favors one-electron and two-electron transfer at Pd-C interfaces and possesses lower surface acidity, partially following the THFAL formation pathway. With respect to the size effect, the smaller Pd NPs selects to form furan ring-opening by-products for a low CPO selectivity, whereas the larger leads to a low intrinsic reaction rate for FAL ring-rearrangement. Only the moderate-size Pd catalysts exhibit satisfactory activity, high CPO selectivity and great recycling stability. Furthermore, FFR-to-FAL hydrogenation is identified as the rate-determining step rather than H2 activation and FAL-to-CPO ring-arrangement. The FT-IR spectra elucidate that FFR molecule is activated in a tilted adsorption configuration through bonding with the exocyclic C--O group for accelerating the successive reaction steps. This work provides the insights into the effects of electronic property and metal size in the metal-acid synergistic catalysis for hydrogenative rearrangement of FFR.
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页数:15
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