Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Репозиторий Евразийского национального университета имени Л.Н. Гумилева
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Ex Situ Catalytic Pyrolysis of Invasive Pennisetum purpureum Grass with Activated Carbon for Upgrading Bio-Oil

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Автор
Reza, Md Sumon
Afroze, Shammya
Kuterbekov, Kairat
Kabyshev, Asset
Bekmyrza, Kenzhebatyr Zh.
Taweekun, Juntakan
Ja’afar, Fairuzeta
Abu Bakar, Muhammad Saifullah
Azad, Abul K.
Roy, Hridoy
Islam, Md. Shahinoor
Дата
2023
Редактор
Sustainability
ISSN
2162-5689
xmlui.dri2xhtml.METS-1.0.item-identifier-citation
Reza, M.S.; Afroze, S.; Kuterbekov, K.; Kabyshev, A.; Zh. Bekmyrza, K.; Taweekun, J.; Ja’afar, F.; Saifullah Abu Bakar, M.; Azad, A.K.; Roy, H.; et al. Ex Situ Catalytic Pyrolysis of Invasive Pennisetum purpureum Grass with Activated Carbon for Upgrading Bio-Oil. Sustainability 2023, 15, 7628. https://doi.org/10.3390/su15097628
Аннотации
Energy demands keep increasing in this modern world as the world population increases, which leads to a reduction in fossil fuels. To resolve these challenges, Pennisetum purpureum, an invasive grass in Brunei Darussalam, was examined as the feedstock for renewable energy through a catalytic pyrolysis process. The activated carbon was applied as the catalyst for a simple and economical solution. The catalytic pyrolysis was executed at 500 ◦C (the temperature for the highest biofuel yield) for both reactors to produce the highest amount of upgraded biofuels. The biochar produced from the non-catalytic and catalytic pyrolysis processes showed a consistent yield due to stable operating conditions, from which the activated carbon was generated and used as the catalyst in this work. A significant amount of improvement was found in the production of biofuels, especially bio-oil. It was found that for catalysts, the number of phenolic, alcohol, furans, and ketones was increased by reducing the amount of acidic, aldehyde, miscellaneous oxygenated, and nitrogenous composites in bio-oils. The highest amount of phenolic compounds was produced due to a number of functional groups (-C=O and -OH) in activated carbon. The regenerated activated carbons also showed promising outcomes as catalysts for upgrading the bio-oils. The overall performance of synthesized and regenerated activated carbon as a catalyst in catalytic pyrolysis was highly promising for improving the quality and stability of bio-oil.
URI
http://rep.enu.kz/handle/enu/17697
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