Nickel on nitrogen-doped carbon pellets for continuous-flow hydrogenation of biomass-derived compounds in water

被引:55
作者
Brandi, Francesco [1 ]
Baeumel, Marius [1 ]
Molinari, Vaterio [1 ]
Shekova, Irina [1 ]
Lauermann, Iver [2 ]
Heil, Tobias [1 ]
Antonietti, Markus [1 ]
Al-Naji, Majd [1 ]
机构
[1] Mar Planck Inst Colloids & Interfaces, Dept Colloids Chem, D-14476 Potsdam, Germany
[2] Helmholtz Zentrum Berlin Mat & Energie GmbH, PVcomB, Schwarzschildstr 3, D-12489 Berlin, Germany
关键词
AQUEOUS-PHASE HYDROGENATION; ADDED-VALUE CHEMICALS; LIGNOCELLULOSIC BIOMASS; SUPPORTED RUTHENIUM; SELECTIVE HYDROGENATION; CATALYTIC-HYDROGENATION; METAL NANOPARTICLES; PLATFORM MOLECULES; HIGH-PERFORMANCE; D-GLUCOSE;
D O I
10.1039/c9gc03826d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Hydrogenation reactions in water at elevated temperatures are challenging for heterogeneous catalysts. Thus, we present a simple, cheap, scalable, and sustainable approach for synthesizing an efficient and stable Ni catalyst supported on highly porous nitrogen-doped carbon (NDC) in pellet form. The performance of this catalyst was evaluated in the aqueous-phase hydrogenation of lignocellulosic biomassderived compounds, i.e., glucose (Glu), xylose (Xyl), and vanillin (V), using a continuous-flow system. The as-prepared 35 wt% Ni on NDC catalyst exhibited a high catalytic performance in all three aqueous-phase hydrogenation reactions, i.e., the conversion of Glu, Xyl, and V was 96.3 mol%, 85 mol%, and 100 mol% and the yield of sorbitol (Sor), xylitol (Xyt), and 2-methoxy-4-methylphenol (MMP) was 82 mol%, 62 mol%, and 100 mol%, respectively. This high activity was attributed to the high specific surface area of NDC and mainly to the heterojunction effects stabilizing and adjusting the homogenously and highly dispersed Ni nanoparticles (A(Ni) = 20m(2) g(-1)) on the surface of NDC. Changing the electron density in the nickel nanoparticles allows the high performance of the catalyst for a long time on stream (40 h) with minimized Ni leaching and without the loss in catalytic performance.
引用
收藏
页码:2755 / 2766
页数:12
相关论文
共 44 条
[31]   Thermal treatment of fluorinated porous carbon in ammonia flow to produce a nitrogen-doped support for highly dispersed nickel effectively catalyzing formic acid dehydrogenation [J].
Nishchakova, Alina D. ;
Bulushev, Dmitri A. ;
Fedoseeva, Yuliya, V ;
Tsygankova, Alphiya R. ;
Trubina, Svetlana, V ;
Kriventsov, Vladimir V. ;
Stonkus, Olga A. ;
Okotrub, Alexander, V ;
Bulusheva, Lyubov G. .
MATERIALS TODAY CHEMISTRY, 2025, 47
[32]   Silicon@Natural Nitrogen-Doped Biomass Carbon Composites Derived from "Silicon Tofu" as Green and Efficient Anode Materials for Lithium-Ion Batteries [J].
Xu, Xuejiao ;
Wu, Fuzhong ;
Yang, Wanliang ;
Dai, Xinyi ;
Wang, Tianhao ;
Zhou, Jiawang ;
Wang, Jing ;
Guo, Dan .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2021, 9 (39) :13215-13224
[33]   Phosphorus-Doped Iron Nitride Nanoparticles Encapsulated by Nitrogen-Doped Carbon Nanosheets on Iron Foam In Situ Derived fromSaccharomycetes Cerevisiaefor Electrocatalytic Overall Water Splitting [J].
Li, Guixiang ;
Yu, Jiayuan ;
Yu, Wanqiang ;
Yang, Linjing ;
Zhang, Xiaoli ;
Liu, Xiaoyan ;
Liu, Hong ;
Zhou, Weijia .
SMALL, 2020, 16 (32)
[34]   Metal-Organic-Framework-Derived Nitrogen-Doped Hybrid Nickel-Iron-Sulfide Architectures on Carbon Cloth as Efficient Electrocatalysts for the Oxygen Evolution Reaction [J].
Shen, Yirui ;
Wang, Ling ;
Jiang, Pingping ;
Lee, Wee Siang Vincent ;
Xue, Junmin .
CHEMELECTROCHEM, 2019, 6 (10) :2741-2747
[35]   Metal–organic framework-derived cobalt nanoparticles modified nitrogen-doped porous carbon hybrids for efficient hydrogenation and one-pot reductive acetylation of nitroarenes [J].
Peng Luo ;
Junteng Chen ;
Manman Mu .
Reaction Kinetics, Mechanisms and Catalysis, 2024, 137 :195-208
[36]   Green and highly selective hydrogenation of lignin-derived aromatics at low temperature over Ru-Fe bimetallic nanoparticles supported on porous nitrogen-doped carbon [J].
Li, Yan-Hong ;
Liu, Fang-Jing ;
Guo, Jia-Pei ;
Yin, Fan ;
Gao, Shan-Shan ;
Lu, Yao ;
Song, Rui ;
Yu, Yan-Ming ;
Zheng, Juan-Juan ;
Zhao, Yun-Peng ;
Zhang, Ri-Guang ;
Huang, Zai-Xing ;
Cao, Jing-Pei ;
Wei, Xian-Yong ;
Fan, Maohong .
FUEL PROCESSING TECHNOLOGY, 2023, 247
[37]   Metal-organic frameworks-derived nitrogen-doped carbon with anchored dual-phased phosphides as efficient electrocatalyst for overall water splitting [J].
Li, Jiancheng ;
Xu, Yao ;
Liang, Liping ;
Ge, Riyue ;
Yang, Jack ;
Liu, Bin ;
Feng, Jing ;
Li, Ying ;
Zhang, Jiujun ;
Zhu, Mingyuan ;
Li, Sean ;
Li, Wenxian .
SUSTAINABLE MATERIALS AND TECHNOLOGIES, 2022, 32
[38]   Metal-organic framework-derived cobalt nanoparticles modified nitrogen-doped porous carbon hybrids for efficient hydrogenation and one-pot reductive acetylation of nitroarenes [J].
Luo, Peng ;
Chen, Junteng ;
Mu, Manman .
REACTION KINETICS MECHANISMS AND CATALYSIS, 2024, 137 (01) :195-208
[39]   Eco-friendly preparation of ultrathin biomass-derived Ni3S2-doped carbon nanosheets for selective hydrogenolysis of lignin model compounds in the absence of hydrogen [J].
Chen, Changzhou ;
Wu, Dichao ;
Liu, Peng ;
Li, Jing ;
Xia, Haihong ;
Zhou, Minghao ;
Jiang, Jianchun .
GREEN CHEMISTRY, 2021, 23 (08) :3090-3103
[40]   Chemoselective Nitro Reduction Using Nitrogen-Doped Carbon-Encapsulated Ni Catalyst and Y-Type Packed Bed Column for Continuous Flow Reaction [J].
Cao, Lei ;
Abbas, Syed Asad ;
Jeong, Seo Hyeon ;
Seo, Dongho ;
Nam, Ki Min ;
Park, Jin Kyoon .
ADVANCED SYNTHESIS & CATALYSIS, 2023, 365 (13) :2230-2239