The Gasification and Pyrolysis of Biomass Using a Plasma System

被引:0
作者
Messerle, Vladimir E. [1 ,2 ]
Ustimenko, Alexandr B. [1 ,2 ]
Lavrichshev, Oleg A. [2 ]
Nugman, Marina K. [2 ]
机构
[1] Minist Sci & High Educ Kazakhstan, Inst Combust Problems, Alma Ata 050012, Kazakhstan
[2] Al Farabi Kazakh Natl Univ, Combust Problems Inst, Alma Ata 050040, Kazakhstan
关键词
biomass; plasma reactor; processing; synthesis gas; thermodynamics; experiment; exergy; optimization; HYDROGEN-PRODUCTION; ECONOMIC-ANALYSIS; EXCAVATED WASTE; EXERGY; CYCLE; TEMPERATURE; DIGESTION;
D O I
10.3390/en17225594
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This research paper analyzes the use of plasma technology to process biomass in the form of dried, mixed animal manure (dung containing 30% moisture). The irrational use of manure as well as huge quantities of it can negatively impact the environment. In comparison to biomass fermentation, the plasma processing of manure can greatly enhance the production of fuel gas, primarily synthesis gas (CO + H2). The organic part of dung, including the moisture, is represented by carbon, hydrogen, and oxygen with a total concentration of 95.21%, while the mineral part is only 4.79%. A numerical analysis of dung plasma gasification and pyrolysis was conducted using the thermodynamic code TERRA. For 300-3000 K and 0.1 MPa pressure, the dung gasification and pyrolysis were calculated with 100% dung + 25% air and 100% dung + 25% nitrogen, respectively. Calculations were performed to determine the specific energy consumption of the process, the composition of the products of gasification, and the extent of the carbon gasification. At 1500 K, the dung gasification and pyrolysis consumed 1.28 and 1.33 kWh/kg of specific energy, respectively. A direct-current plasma torch with a power rating of 70 kW and a plasma reactor with a dung processing capacity of 50 kg/h were used for the dung processing experiments. The plasma reactor consumed 1.5 and 1.4 kWh/kg when pyrolyzing and gasifying the dung. A maximum temperature of 1887 K was reached in the reactor. The plasma pyrolysis of dung and the plasma-air gasification of dung produced gases with specific heats of combustion of 10,500 and 10,340 kJ/kg, respectively. Calculations and experiments on dung plasma processing showed satisfactory agreement. In this research, exergy analysis was used to quantify the efficiency of the plasma gasification of biomass. One of the research tasks was to develop a methodology and establish standards for the further standardization of monitoring the toxic emissions of dioxins, furans, and Benzo[a]pyrene.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] Co-processing plastics waste and biomass by pyrolysis-gasification: a review
    Yek, Peter Nai Yuh
    Chan, Yi Herng
    Foong, Shin Ying
    Mahari, Wan Adibah Wan
    Chen, Xiangmeng
    Liew, Rock Keey
    Ma, Nyuk Ling
    Tsang, Yiu Fai
    Sonne, Christian
    Cheng, Yoke Wang
    Tan, Yie Hua
    Lam, Su Shiung
    ENVIRONMENTAL CHEMISTRY LETTERS, 2024, 22 (01) : 171 - 188
  • [42] Product Compositions from Sequential Biomass Pyrolysis and Gasification of Its Char Residue
    Wang, Xinyu
    Panahi, Aidin
    Qi, Haoxuan
    Zhai, Ming
    Dong, Peng
    Levendis, Yiannis A.
    JOURNAL OF ENERGY ENGINEERING, 2020, 146 (05)
  • [43] Exergy analysis of hydrogen production from biomass gasification
    Abuadala, A.
    Dincer, I.
    Naterer, G. F.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (10) : 4981 - 4990
  • [44] Thermodynamic evaluation of biomass gasification with air in autothermal gasifiers
    Zhang, Yaning
    Li, Bingxi
    Li, Hongtao
    Liu, Hui
    THERMOCHIMICA ACTA, 2011, 519 (1-2) : 65 - 71
  • [45] Exergy sustainability analysis of biomass gasification: a critical review
    Shahbeig, Hossein
    Shafizadeh, Alireza
    Rosen, Marc A.
    Sels, Bert F.
    BIOFUEL RESEARCH JOURNAL-BRJ, 2022, 9 (01): : 1592 - 1607
  • [46] Exergy analysis of biomass gasification
    Análisis exergético de la gasificación de biomasa
    Mendoza, J.M. (jorge.mendoza@upb.edu.co), 1600, Centro de Informacion Tecnologica (23): : 85 - 96
  • [47] Performance analysis of a novel multi-production design via the integration of medical waste plasma gasification and waste tire pyrolysis
    Gui, Fangxu
    Chen, Heng
    Zheng, Qiwei
    Zhao, Huanlin
    Pan, Peiyuan
    Bian, Jiayu
    Yu, Zhiyong
    ENERGY, 2024, 313
  • [48] Design and Performance Evaluation of Integrating the Waste Heat Recovery System (WHRS) for a Silicon Arc Furnace with Plasma Gasification for Medical Waste
    Dong, Yuehong
    Wei, Lai
    Wang, Sheng
    Pan, Peiyuan
    Chen, Heng
    ENTROPY, 2023, 25 (04)
  • [49] Assessing the gasification performance of biomass: A review on biomass gasification process conditions, optimization and economic evaluation
    Ahmad, Anis Atikah
    Zawawi, Norfadhila Abdullah
    Kasim, Farizul Hafiz
    Inayat, Abrar
    Khasri, Azduwin
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 53 : 1333 - 1347
  • [50] Development and assessment of a biomass-gasification based multigenerational plant for production of hydrogen and ammonia fuels
    Yuksel, Yunus Emre
    Ozturk, Murat
    Dincer, Ibrahim
    FUEL, 2025, 380