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
  • [1] A cleaner process for conversion of invasive weed (Prosopis juliflora) into energy-dense fuel: kinetics, energy, and exergy analysis of pyrolysis process
    Ramesh, Nagarajan
    Murugavelh, Somasundaram
    BIOMASS CONVERSION AND BIOREFINERY, 2022, 12 (08) : 3067 - 3080
  • [2] Electrocatalysis for the cleaner energy conversion process
    Ali, Gomma A. M.
    ENERGY REPORTS, 2021, 7 : 7852 - 7853
  • [3] A LIQUID TORREFICATION PROCESS FOR PRODUCING A STORABLE, ENERGY-DENSE FUEL FROM BIOMASS FEEDSTOCK
    Watson, Kyle A.
    Stringfellow, William T.
    Pejack, Edwin R.
    Paoluccio, John J.
    Jain, Ravi K.
    ASME POWER CONFERENCE, 2010, 2010, : 21 - 28
  • [4] A detailed assessment of pyrolysis kinetics of invasive lignocellulosic biomasses (Prosopis juliflora and Lantana camara) by thermogravimetric analysis
    Sahoo, Abhisek
    Kumar, Sachin
    Kumar, Jitendra
    Bhaskar, Thallada
    BIORESOURCE TECHNOLOGY, 2021, 319
  • [5] Energy-dense liquid fuel intermediates by pyrolysis of guayule (Parthenium argentatum) shrub and bagasse
    Boateng, Akwasi A.
    Mullen, Charles A.
    Goldberg, Neil M.
    Hicks, Kevin B.
    McMahan, Colleen M.
    Whalen, Maureen C.
    Cornish, Katrina
    FUEL, 2009, 88 (11) : 2207 - 2215
  • [6] Energy and exergy analysis of the silicon production process
    Takla, M.
    Kamfjord, N. E.
    Tveit, Halyard
    Kjelstrup, S.
    ENERGY, 2013, 58 : 138 - 146
  • [7] Energy and exergy analysis of an ethanol reforming process for solid oxide fuel cell applications
    Tippawan, Phanicha
    Arpornwichanop, Amornchai
    BIORESOURCE TECHNOLOGY, 2014, 157 : 231 - 239
  • [8] Exergy and Energy Analysis, Drying Kinetics and Mathematical Modeling of White Mulberry Drying Process
    Darvishi, Hosain
    Zarein, Mohammad
    Minaei, Saied
    Khafajeh, Hamid
    INTERNATIONAL JOURNAL OF FOOD ENGINEERING, 2014, 10 (02) : 269 - 280
  • [9] ANALYSIS OF WAVE ENERGY CONVERSION PROCESS
    Nedelcu, Dragos-Iulian
    Sajin, Tudor
    Ferreri, Giovanni Batistta
    Lo Re, Carlo
    Ostahie, Constantin-Narcis
    MODTECH 2011: NEW FACE OF T.M.C.R., VOL I AND II, 2011, : 753 - 756
  • [10] ENERGY AND EXERGY ANALYSIS OF FROZEN CHERRY PRODUCTION PROCESS
    Alta, Z. Deniz
    Ertekin, Can
    TRENDS IN AGRICULTURAL ENGINEERING 2013, 2013, : 62 - 66