A cleaner process for conversion of invasive weed (Prosopis juliflora) into energy-dense fuel: kinetics, energy, and exergy analysis of pyrolysis process

被引:0
|
作者
Nagarajan Ramesh
Somasundaram Murugavelh
机构
[1] Vellore Institute of Technology,School of Mechanical Engineering
[2] Vellore Institute of Technology,CO2 Research and Green Technologies Centre
来源
关键词
Thermogravimetric analysis; Gas chromatography-mass spectrometry analysis; Pyrolysis; Kinetic analysis; Exergy analysis;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, bio-oil production, kinetics analysis, and exergy analysis of Prosopis juliflora pyrolysis are reported. The biomass was segregated into two different particle sizes (< 0.5 mm and > 2.0 mm). Elemental analysis and higher heating value of Prosopis juliflora biomass were estimated. Thermogravimetric analysis of biomass was performed at 5 different heating rates of (5 °C min−1, 10 °C min−1, 15 °C min−1, 20 °C min−1, 25 °C min−1). Thermal degradation of Prosopis juliflora biomass was performed at different temperature ranging from 400 °C, 450 °C, 500 °C, 550 °C to 600 °C. The maximum liquid yield was 17.4% obtained at 500 °C with 0.5 mm particle size. Gas chromatography-mass spectrometry analysis of the Prosopis juliflora liquid phase showed the presence of petroleum compounds. Iso-conversion method is used to establish the kinetic parameters. The mean activation energies obtained from the Kissinger, Kissinger-Akahira-Sunose, Ozawa-Flynn-Wall, and Friedman model are 107.583 kJ mol−1, 138.78 kJ mol−1,145.36 kJ mol−1, and 157.21 kJ mol−1 respectively. The maximum exergy efficiency for pyro-gas was 54.92%, with a particle size of < 0.5 mm at 600 °C. The present study shows that hazardous material like Prosopis juliflora can be converted into energy-dense fuel, thereby paving way for mitigation of the toxic weed.
引用
收藏
页码:3067 / 3080
页数:13
相关论文
共 50 条
  • [21] Process study and exergy analysis of a novel air separation process cooled by LNG cold energy
    Wendong Xu
    Jiao Duan
    Wenjun Mao
    Journal of Thermal Science, 2014, 23 : 77 - 84
  • [22] Analysis of energy and exergy use for process heating in the industrial sector of Malaysia
    Saidur, R.
    Khaliq, A. H. Abdul
    Masjuki, H. H.
    INTERNATIONAL JOURNAL OF EXERGY, 2006, 3 (02) : 119 - 149
  • [23] Energy and exergy analysis applied to the evaporative cooling process in air washers
    Santos, J. C.
    Barros, G. D. T.
    Gurgel, J. M.
    Marcondes, F.
    INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2013, 36 (03): : 1154 - 1161
  • [24] Energy and exergy analysis of ethanol production process from banana fruit
    Ivan Velasquez, Hector
    Adriana Ruiz, Angela
    de Oliveira Junior, Silvio
    REVISTA FACULTAD DE INGENIERIA-UNIVERSIDAD DE ANTIOQUIA, 2010, (51): : 87 - 96
  • [25] A novel process for coke wastewater gasification quenching: Energy and exergy analysis
    Li, Zhen
    Zhang, Xinru
    Lai, Nien-Chu
    Jiang, Zeyi
    Li, Jingzhai
    APPLIED THERMAL ENGINEERING, 2021, 191
  • [26] Analysis of energy conversion process in electromagnetic rail launcher
    Chen S.
    Wang J.
    Cheng W.
    Yan P.
    Xu W.
    Dianji yu Kongzhi Xuebao/Electric Machines and Control, 2024, 28 (05): : 60 - 72
  • [27] Energy conversion process analysis of plasma aerodynamic actuation
    Liang, Hua
    Li, Ying-Hong
    Jia, Min
    Bai, Jun-Xin
    Zhang, Sheng-Zhi
    Bai, Jun-Xing
    Gaodianya Jishu/High Voltage Engineering, 2010, 36 (12): : 3054 - 3058
  • [28] Energy and environmental analysis of a rapeseed biorefinery conversion process
    Boldrin, Alessio
    Balzan, Alberto
    Astrup, Thomas
    BIOMASS CONVERSION AND BIOREFINERY, 2013, 3 (02) : 127 - 141
  • [29] Energy and environmental analysis of a rapeseed biorefinery conversion process
    Alessio Boldrin
    Alberto Balzan
    Thomas Astrup
    Biomass Conversion and Biorefinery, 2013, 3 (2) : 127 - 141
  • [30] ASSESSMENT OF THE ENERGY CONVERSION OF WHOLE OIL FRUITS WITH A PYROLYSIS AND GAS TURBINE PROCESS
    Fantozzi, Francesco
    D'Alessandro, Bruno
    Bartocci, Pietro
    Desideri, Umberto
    Bidini, Gianni
    PROCEEDINGS OF THE ASME TURBO EXPO 2010, VOL 1, 2010, : 685 - 693