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    Contrasting the Pyrolysis Behavior of Selected Biomass and the Effect of Lignin

    Source: Journal of Energy Resources Technology:;2018:;volume 140:;issue 006::page 62201
    Author:
    Zhang, Zhezi
    ,
    Zhu, Mingming
    ,
    Hobson, Philip
    ,
    Doherty, William
    ,
    Zhang, Dongke
    DOI: 10.1115/1.4039321
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: This study was aimed at comparing the pyrolysis behavior of several selected biomass samples, namely, pine wood, poplar wood, wheat straw, and sugarcane bagasse, with a particular attention to the effect of lignin. Raw samples were first treated using Soxhlet solvent extraction with a 2:1 (v/v) mixture of toluene/ethanol to remove wax. Lignin was then removed by soaking the dewaxed samples in a 1.0 M sodium chlorite solution at 343 K till the solids became white. Fourier transform infrared (FTIR) spectroscopy analysis was applied to characterize the surface functional groups of the samples. The morphology of the samples before and after delignification treatment was analyzed using scanning electron microscope (SEM). The pyrolysis behavior of the raw and treated biomass samples was studied using a thermogravimetric analyzer (TGA) operating in nitrogen at a constant heating rate of 10 K min−1 from room temperature to the final temperature 823 K. The FTIR and SEM results indicated that lignin can be successfully removed from the raw biomass via the chemical treatment used. As expected, the pyrolysis behavior differed significantly among the various raw biomass samples. However, the pyrolysis behavior of the delignified samples showed almost identical thermal behavior although the temperature associated with the maximum rate of pyrolysis was shifted to a lower temperature regime by ca. 50 K. This suggests that the presence of lignin significantly affected the biomass pyrolysis behavior. Thus, the pyrolysis behavior of the biomass cannot be predicted simply from the individual components without considering their interactions.
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      Contrasting the Pyrolysis Behavior of Selected Biomass and the Effect of Lignin

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    contributor authorZhang, Zhezi
    contributor authorZhu, Mingming
    contributor authorHobson, Philip
    contributor authorDoherty, William
    contributor authorZhang, Dongke
    date accessioned2019-02-28T10:56:36Z
    date available2019-02-28T10:56:36Z
    date copyright2/27/2018 12:00:00 AM
    date issued2018
    identifier issn0195-0738
    identifier otherjert_140_06_062201.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4251025
    description abstractThis study was aimed at comparing the pyrolysis behavior of several selected biomass samples, namely, pine wood, poplar wood, wheat straw, and sugarcane bagasse, with a particular attention to the effect of lignin. Raw samples were first treated using Soxhlet solvent extraction with a 2:1 (v/v) mixture of toluene/ethanol to remove wax. Lignin was then removed by soaking the dewaxed samples in a 1.0 M sodium chlorite solution at 343 K till the solids became white. Fourier transform infrared (FTIR) spectroscopy analysis was applied to characterize the surface functional groups of the samples. The morphology of the samples before and after delignification treatment was analyzed using scanning electron microscope (SEM). The pyrolysis behavior of the raw and treated biomass samples was studied using a thermogravimetric analyzer (TGA) operating in nitrogen at a constant heating rate of 10 K min−1 from room temperature to the final temperature 823 K. The FTIR and SEM results indicated that lignin can be successfully removed from the raw biomass via the chemical treatment used. As expected, the pyrolysis behavior differed significantly among the various raw biomass samples. However, the pyrolysis behavior of the delignified samples showed almost identical thermal behavior although the temperature associated with the maximum rate of pyrolysis was shifted to a lower temperature regime by ca. 50 K. This suggests that the presence of lignin significantly affected the biomass pyrolysis behavior. Thus, the pyrolysis behavior of the biomass cannot be predicted simply from the individual components without considering their interactions.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleContrasting the Pyrolysis Behavior of Selected Biomass and the Effect of Lignin
    typeJournal Paper
    journal volume140
    journal issue6
    journal titleJournal of Energy Resources Technology
    identifier doi10.1115/1.4039321
    journal fristpage62201
    journal lastpage062201-5
    treeJournal of Energy Resources Technology:;2018:;volume 140:;issue 006
    contenttypeFulltext
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