Syngas production from fast pyrolysis and steam gasification of mixed food waste

被引:4
|
作者
Singh, Dharminder [1 ]
Raizada, Aayush [1 ]
Yadav, Sanjeev [1 ]
机构
[1] Shiv Nadar Univ, Dept Chem Engn, Sch Engn, Greater Noida 201314, India
关键词
Thermochemical; pyrolysis; gasification; syngas yield; syngas composition; high heating value; HYDROGEN-RICH GAS; SEWAGE-SLUDGE; WOOD; PERFORMANCE; BIOMASS;
D O I
10.1177/0734242X221093948
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Food waste generation is a worldwide phenomenon and disposing off it in an environmentally benign way has been a challenge. Thermochemical processes have the potential for not only processing mixed food waste effectively from an environmental point of view but also producing bioenergy in all three forms: solid (biochar), liquid (bio-oil) and gas (syngas). In this study, two thermochemical processes - fast pyrolysis and steam gasification - aimed for producing syngas as main product were carried out at three different temperatures: 600 degrees C, 700 degrees C and 800 degrees C, and resulting syngas was characterised and compared for syngas yield, syngas composition, hydrogen yield and high heating value (HHV). The steam flow rate (SFR) was maintained at 0.625 mL min(-1) for all gasification experiments. The syngas yield obtained from steam gasification was higher (1.2 m(3) kg(-1)) than the syngas yield from fast pyrolysis (0.81 m(3) kg(-1)). In addition, the hydrogen fraction was much higher in syngas from steam gasification (63.58%) than that from fast pyrolysis (45.03%). Furthermore, carbon conversion efficiency (CCE) and apparent thermal efficiency (ATE) were determined to compare the performance of these two processes. CCE was higher (63.6%) for steam gasification than that for pyrolysis (52.3%) which suggested that steam gasification was much more effective than fast pyrolysis to produce syngas of higher quality.
引用
收藏
页码:1669 / 1675
页数:7
相关论文
共 50 条
  • [11] Plasma steam gasification of surgical mask waste for hydrogen-rich syngas production
    Yousef, Samy
    Tamosiunas, Andrius
    Aikas, Mindaugas
    Uscila, Rolandas
    Gimzauskaite, Dovile
    Zakarauskas, Kestutis
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 49 : 1375 - 1386
  • [12] PYROLYSIS AND CO2 GASIFICATION OF COMPOSITE POLYMER ABSORBENT WASTE FOR SYNGAS PRODUCTION
    Burra, K. G.
    Singh, P.
    Deparrois, N.
    Gupta, A. K.
    PROCEEDINGS OF THE ASME POWER CONFERENCE, 2019, 2019,
  • [13] Steam Gasification of Biochar Derived from Fast Pyrolysis for Hydrogen-rich Gas Production
    Zeng, Wei-qiang
    Zhu, Ling-jun
    Wang, Qi
    ADVANCED RESEARCH ON MATERIAL ENGINEERING, CHEMISTRY, BIOINFORMATICS III, 2014, 830 : 477 - +
  • [14] Hydrogen and syngas production from sewage sludge via steam gasification
    Nipattummakul, Nimit
    Ahmed, Islam I.
    Kerdsuwan, Somrat
    Gupta, Ashwani K.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (21) : 11738 - 11745
  • [15] Steam/oxygen gasification system for the production of clean syngas from switchgrass
    Broer, Karl M.
    Woolcock, Patrick J.
    Johnston, Patrick A.
    Brown, Robert C.
    FUEL, 2015, 140 : 282 - 292
  • [16] Contributions of pyrolysis, volatile reforming and char gasification to syngas production during steam gasification of raw and torrefied leftover rice
    Huang, Jingchun
    Feng, Chao
    Yu, Yun
    Xie, Di
    Wang, Zhenqi
    Hu, Wei
    Qiao, Yu
    FUEL, 2021, 304
  • [17] Unveiling the potential of pyrolysis-gasification for hydrogen-rich syngas production from biomass and plastic waste
    Mishra, Rahul
    Shu, Chi-Min
    Gollakota, Anjani R. K.
    Pan, Shu-Yuan
    ENERGY CONVERSION AND MANAGEMENT, 2024, 321
  • [18] High quality syngas production from catalytic steam gasification of biomass with calcium-rich construction waste
    Zhao, Zhigang
    Kong, Weiguo
    Wu, Shuang
    Zeng, Xi
    Cui, Ping
    JOURNAL OF THE ENERGY INSTITUTE, 2023, 111
  • [19] The effect of pyrolysis temperature on the optimal conversion of residual biomass to clean syngas through fast-pyrolysis/steam gasification integration
    Papa, A.A.
    Bartolucci, L.
    Cordiner, S.
    Di Carlo, A.
    Mele, P.
    Mulone, V.
    Vitale, A.
    International Journal of Hydrogen Energy, 2024, 95 : 1316 - 1327
  • [20] Production of H2-rich syngas from gasification of unsorted food waste in supercritical water
    Su, Hongcai
    Kanchanatip, Ekkachai
    Wang, Defeng
    Zheng, Rendong
    Huang, Zhicheng
    Chen, Yang
    Mubeen, Ishrat
    Yan, Mi
    WASTE MANAGEMENT, 2020, 102 : 520 - 527