Preparation and characterization of furfural residue derived char-based catalysts for biomass tar cracking

被引:9
作者
Bai J. [1 ]
He Z. [1 ]
Yang L. [2 ]
Wei X. [1 ]
Hu J. [1 ,3 ,4 ,5 ,6 ]
Li P. [1 ]
Yan Z. [3 ]
Chen Z. [6 ]
Chang C. [2 ,3 ,5 ,6 ]
机构
[1] School of Mechanical and Power Engineering, Zhengzhou University, Henan, Zhengzhou
[2] School of Chemical Engineering, Zhengzhou University, Henan, Zhengzhou
[3] National Key Laboratory of Biobased Transport Fuel Technology, Henan, Zhengzhou
[4] Hubei Key Laboratory of Industrial Fume and Dust Pollution Control, Jianghan University, Hubei, Wuhan
[5] Henan Center for Outstanding Overseas Scientists, Henan, Zhengzhou
[6] Henan Key Laboratory of Green Manufacturing of Biobased Chemicals, Henan, Puyang
基金
中国国家自然科学基金;
关键词
Biochar; Catalytic cracking; Furfural residue; Metal modified; Tar;
D O I
10.1016/j.wasman.2024.03.013
中图分类号
学科分类号
摘要
This study proposed an innovative strategy of catalytic cracking of tar during biomass pyrolysis/gasification using furfural residue derived biochar-based catalysts. Fe, Co, and Ni modified furfural residue char (FRC-Fe, FRC-Co, and FRC-Ni) were prepared by one-step impregnation method. The influences of cracking temperature and metal species on the tar cracking characteristics were investigated. The results showed that the tar conversion efficiency for all catalysts were improved with the cracking temperature increasing, the higher tar conversion efficiency achieved at 800 °C were 66.72 %, 89.58 %, 84.58 %, and 94.70 % for FRC, FRC-Fe, FRC-Co, and FRC-Ni respectively. FRC-Ni achieved the higher gas (H2, CO, CH4, CO2) yield 681.81 mL/g. At 800 °C, the catalyst (FRC-Ni) still reached a high tar conversion efficiency over 85.90 % after 5 cycles. SEM-EDS results showed that the distribution of Ni particles on the biochar support was uniform. TGA results demonstrated that FRC-Ni exhibited better thermal stability. XRD results indicated that there was no significant change in the grain size of Ni before and after the reaction. The FRC-Ni catalyst was reasonably stable due to its better anti-sintering and coke-resistant capabilities. © 2024 Elsevier Ltd
引用
收藏
页码:182 / 191
页数:9
相关论文
共 50 条
[31]   Green synthesis of Ni supported hematite catalysts for syngas production from catalytic cracking of toluene as a model compound of biomass tar [J].
Zou, Xuehua ;
Ma, Zhiyuan ;
Liu, Haibo ;
Chen, Dong ;
Wang, Can ;
Zhang, Ping ;
Chen, Tianhu .
FUEL, 2018, 217 :343-351
[32]   Catalytic cracking of biomass tar using Ni nanoparticles embedded carbon nanofiber/porous carbon catalysts [J].
Zhang, Shuping ;
Yin, Haoxin ;
Wang, Jiaxing ;
Zhu, Shuguang ;
Xiong, Yuanquan .
ENERGY, 2021, 216
[33]   Investigation into biochar supported Fe-Mo carbides catalysts for efficient biomass gasification tar cracking [J].
Zhang, Shuping ;
Wang, Jiaxing ;
Ye, Lei ;
Li, Sha ;
Su, Yinhai ;
Zhang, Huiyan .
CHEMICAL ENGINEERING JOURNAL, 2023, 454
[34]   Surface Analyses of Cobalt Catalysts for the Steam Reforming of Tar derived from Biomass Gasification [J].
Tasaka, Kazuhiko ;
Furusawa, Takeshi ;
Ujimine, Kiyoshi ;
Tsutsumi, Atsushi .
NEW DEVELOPMENT AND APPLICATION IN CHEMICAL REACTION ENGINEERING, 4TH ASIA-PACIFIC CHEMICAL REACTION ENGINEERING SYMPOSIUM (APCRE 05), 2006, 159 :517-520
[35]   Study on the catalytic activity of char-based Fe-Co-K catalyst for volatiles reforming during biomass pyrolysis [J].
Zhang, Tao ;
Lu, Qiuxiang ;
Xie, Xiaoguang ;
Zhao, Yanwei ;
Yuan, Shenfu .
JOURNAL OF THE ENERGY INSTITUTE, 2022, 102 :289-301
[36]   Unlocking the potential of biochar derived from coffee husk and khat stem for catalytic tar cracking during biomass pyrolysis: characterization and evaluation [J].
Afessa, Million M. ;
Olu, Femi Emmanuel ;
Geleta, Wondwosen Sime ;
Legese, Surafel Shiferaw ;
Ramayya, A. Venkata .
BIOMASS CONVERSION AND BIOREFINERY, 2025, 15 (07) :11011-11026
[37]   Synthesis of Sargassum char-supported Ni-Fe nanoparticles and its application in tar cracking during biomass pyrolysis [J].
Liang, Shuang ;
Guo, Feiqiang ;
Du, Shilin ;
Tian, Beile ;
Dong, Yichen ;
Jia, Xiaopeng ;
Qian, Lin .
FUEL, 2020, 275
[38]   The preparation of low-cost adsorbent for heavy metal based on furfural residue [J].
Wang, Ying ;
Xu, Zhen-yu ;
Song, Xu ;
Yang, Bing ;
Zhang, Dong .
MATERIALS AND MANUFACTURING PROCESSES, 2017, 32 (01) :87-92
[39]   Study of mayenite produced from waste eggshell as support for Ni-Co catalysts for biomass tar cracking [J].
Manera, Christian ;
Perondi, Daniele ;
Dotto, Guilherme Luiz ;
Barcellos, Thiago ;
Godinho, Marcelo .
CHEMICAL ENGINEERING RESEARCH & DESIGN, 2021, 176 :218-228
[40]   Preparation of NiO/MgxSi1-xOy Catalysts and Their Application in Catalytic Cracking of Tar Components in Hot Coke Oven Gas [J].
Li Xue-Ling ;
Yue Bao-Hua ;
Wang Xue-Guang ;
Yu Fei ;
Kong Ling-Hua ;
Lu Xiong-Gang ;
Ding Wei-Zhong .
ACTA PHYSICO-CHIMICA SINICA, 2009, 25 (04) :762-766