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    Torrefaction Temperature Effects on Grindability of Wheat Straw Using TG-FTIR Analysis

    Source: Journal of Energy Resources Technology, Part A: Sustainable and Renewable Energy:;2025:;volume( 001 ):;issue: 003::page 31901-1
    Author:
    Wang, Xin
    ,
    Wang, Zhiwei
    ,
    Chen, Gaofeng
    ,
    Li, Zaifeng
    ,
    Yang, Shuhua
    ,
    Du, Xinze
    ,
    Gupta, Ashwani K.
    DOI: 10.1115/1.4067363
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Torrefaction used for the pretreatment of biomass can enhance grindability along with a significant reduction of energy consumption required for pulverization to aid in large-scale utilization of biomass energy. In this study, torrefaction experiments of wheat straw were conducted at different temperatures using an experimental furnace facility. The influence of torrefaction temperature on the grindability of resulting wheat straw was explored using a hardgrove grindability index tester and thermogravimetric-Fourier transform infrared (TG-FTIR) spectroscopy. The results indicated that an increase in torrefaction temperature significantly increased the carbon content of wheat straw and decreased the oxygen content to result in a decrease in the O/C ratio from 0.66 to 0.39. The calorific value increased by 24% from 15.42 MJ/kg to 19.17 MJ/kg. An increase in torrefaction temperature from 220 °C to 269 °C increased the grindability index from 29 to 115. The grindability of wheat straw can be controlled to values similar to that of coal by tuning the torrefaction temperature. The main gas components released during torrefaction were H2O, CH4, CO2, and CO. Thermogravimetric data showed 29% solid residues from the raw wheat straw. An increase in torrefaction temperature increased solid residue to 41%. The pyrolysis of wheat straw at different torrefaction temperatures can be grouped into three stages such as dehydration, rapid pyrolysis, and carbonization. This study reveals effective large-scale utilization of wheat straw biomass as a high heating value solid fuel using torrefaction pretreatment.
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      Torrefaction Temperature Effects on Grindability of Wheat Straw Using TG-FTIR Analysis

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    contributor authorWang, Xin
    contributor authorWang, Zhiwei
    contributor authorChen, Gaofeng
    contributor authorLi, Zaifeng
    contributor authorYang, Shuhua
    contributor authorDu, Xinze
    contributor authorGupta, Ashwani K.
    date accessioned2025-04-21T10:14:16Z
    date available2025-04-21T10:14:16Z
    date copyright1/9/2025 12:00:00 AM
    date issued2025
    identifier issn2997-0253
    identifier otherjerta_1_3_031901.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4305769
    description abstractTorrefaction used for the pretreatment of biomass can enhance grindability along with a significant reduction of energy consumption required for pulverization to aid in large-scale utilization of biomass energy. In this study, torrefaction experiments of wheat straw were conducted at different temperatures using an experimental furnace facility. The influence of torrefaction temperature on the grindability of resulting wheat straw was explored using a hardgrove grindability index tester and thermogravimetric-Fourier transform infrared (TG-FTIR) spectroscopy. The results indicated that an increase in torrefaction temperature significantly increased the carbon content of wheat straw and decreased the oxygen content to result in a decrease in the O/C ratio from 0.66 to 0.39. The calorific value increased by 24% from 15.42 MJ/kg to 19.17 MJ/kg. An increase in torrefaction temperature from 220 °C to 269 °C increased the grindability index from 29 to 115. The grindability of wheat straw can be controlled to values similar to that of coal by tuning the torrefaction temperature. The main gas components released during torrefaction were H2O, CH4, CO2, and CO. Thermogravimetric data showed 29% solid residues from the raw wheat straw. An increase in torrefaction temperature increased solid residue to 41%. The pyrolysis of wheat straw at different torrefaction temperatures can be grouped into three stages such as dehydration, rapid pyrolysis, and carbonization. This study reveals effective large-scale utilization of wheat straw biomass as a high heating value solid fuel using torrefaction pretreatment.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleTorrefaction Temperature Effects on Grindability of Wheat Straw Using TG-FTIR Analysis
    typeJournal Paper
    journal volume1
    journal issue3
    journal titleJournal of Energy Resources Technology, Part A: Sustainable and Renewable Energy
    identifier doi10.1115/1.4067363
    journal fristpage31901-1
    journal lastpage31901-8
    page8
    treeJournal of Energy Resources Technology, Part A: Sustainable and Renewable Energy:;2025:;volume( 001 ):;issue: 003
    contenttypeFulltext
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