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    Combustion Behavior and Kinetics of Turkish Lignite Blended with Biomass/Magnesite Dust

    Source: Journal of Energy Engineering:;2018:;Volume ( 144 ):;issue: 006
    Author:
    Yousefzad Farrokhi Farshid;Kazanç Feyza
    DOI: 10.1061/(ASCE)EY.1943-7897.0000579
    Publisher: American Society of Civil Engineers
    Abstract: The effect of blending on the combustion behavior of a Turkish lignite blended with biomass or magnesite dust using a thermogravimetric analyzer (TGA) coupled with a Fourier transform infrared spectrometer (FTIR) under air atmosphere has been investigated. The lignite used in this study is Tunçbilek lignite (TL), which is blended with two biomasses, olive residue (OR) and almond shell (AS), and the inorganic industrial waste, magnesite dust (MD). The blends are composed of various weight fractions of fuels, with a constant weight fraction of molasses (1% by weight) as a binding agent. TGA weight loss trends are used to obtain characteristic temperatures and to define weight conversion stages. Experimental results show three distinct stages of conversion during combustion of biomass fuels and two stages for lignite. Burnout temperature increases and the combustibility index decreases for lignite when blended with molasses. On the other hand, blending of biomass with lignite results in approximately 4°C lower ignition temperatures and an increase in combustibility index and reactivity. FTIR results of biomass blend combustion indicate a positive effect in reducing the CO and SOx emissions when blended with lignite. Magnesite dust addition causes a decrease in gaseous emissions for all blending ratios having the maximum reduction at 1% by weight of magnesite. Moreover, kinetic parameters (apparent activation energy, pre-exponential factor) for each fuel are obtained using a model-fitting method (Coats-Redfern). Addition of biomass/magnesite dust to the lignite caused a decrease in apparent activation energy. Specifically, apparent activation energy of lignite decreases from 15.6 to 81.6  kJ·mol−1 by adding molasses and reaches approximately 2  kJ·mol−1 by adding 7% by weight of olive residue and almond shell, respectively.
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      Combustion Behavior and Kinetics of Turkish Lignite Blended with Biomass/Magnesite Dust

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4248854
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    contributor authorYousefzad Farrokhi Farshid;Kazanç Feyza
    date accessioned2019-02-26T07:42:33Z
    date available2019-02-26T07:42:33Z
    date issued2018
    identifier other%28ASCE%29EY.1943-7897.0000579.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4248854
    description abstractThe effect of blending on the combustion behavior of a Turkish lignite blended with biomass or magnesite dust using a thermogravimetric analyzer (TGA) coupled with a Fourier transform infrared spectrometer (FTIR) under air atmosphere has been investigated. The lignite used in this study is Tunçbilek lignite (TL), which is blended with two biomasses, olive residue (OR) and almond shell (AS), and the inorganic industrial waste, magnesite dust (MD). The blends are composed of various weight fractions of fuels, with a constant weight fraction of molasses (1% by weight) as a binding agent. TGA weight loss trends are used to obtain characteristic temperatures and to define weight conversion stages. Experimental results show three distinct stages of conversion during combustion of biomass fuels and two stages for lignite. Burnout temperature increases and the combustibility index decreases for lignite when blended with molasses. On the other hand, blending of biomass with lignite results in approximately 4°C lower ignition temperatures and an increase in combustibility index and reactivity. FTIR results of biomass blend combustion indicate a positive effect in reducing the CO and SOx emissions when blended with lignite. Magnesite dust addition causes a decrease in gaseous emissions for all blending ratios having the maximum reduction at 1% by weight of magnesite. Moreover, kinetic parameters (apparent activation energy, pre-exponential factor) for each fuel are obtained using a model-fitting method (Coats-Redfern). Addition of biomass/magnesite dust to the lignite caused a decrease in apparent activation energy. Specifically, apparent activation energy of lignite decreases from 15.6 to 81.6  kJ·mol−1 by adding molasses and reaches approximately 2  kJ·mol−1 by adding 7% by weight of olive residue and almond shell, respectively.
    publisherAmerican Society of Civil Engineers
    titleCombustion Behavior and Kinetics of Turkish Lignite Blended with Biomass/Magnesite Dust
    typeJournal Paper
    journal volume144
    journal issue6
    journal titleJournal of Energy Engineering
    identifier doi10.1061/(ASCE)EY.1943-7897.0000579
    page4018064
    treeJournal of Energy Engineering:;2018:;Volume ( 144 ):;issue: 006
    contenttypeFulltext
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