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Life Cycle Assessment of Asphalt Mix Containing Jordanian Oil Shale Ash

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Języki publikacji
EN
Abstrakty
EN
The focal theme of this study is to evaluate the life cycle of asphalt mix containing Jordanian oil shale ash (OSA). Life cycle assessment (LCA) approach was conducted to assess the environmental impact of all manufacturing stages of the asphalt mix from Global warming potential (GWP) and energy consumption (EC) perspectives. The documentation for the LCA study was done in accordance with ISO 14044:2006 standards for the research’s goal and scope, inventory analysis, impact assessment, and interpretation. The results revealed that replacing the asphalt mix partially with Jordanian OSA (10 wt.%) resulted in slight reduction in both GWP and EC. A reduction of 2.83% and 4.8% for GWP and EC, respectively, was obtained.
Twórcy
  • The Engineering Management Master Program, Faculty of Engineering, Mutah University, Karak, Jordan
  • Chemical Engineering Department, Faculty of Engineering, Mutah University, 61710 Al-Karak, Jordan
  • Chemical Engineering Department, Faculty of Engineering, Mutah University, 61710 Al-Karak, Jordan
Bibliografia
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  • 3. Al-Masaeid H., Khedaywi T., Smadi M. 1989. Properties of asphalt-oil shale ash bituminous mixtures under normal and freeze-thaw conditions, Journal of the Transportation Research Board, Transportation Research Record, 54–62.
  • 4. Al-Otoom A.Y. 2005. A thermodynamic study on the utilization of Jordanian oil shale in the cement industry, Oil shale, 22, 37–49.
  • 5. Aljbour S.H. 2016. Production of Ceramics from Waste Glass and Jordanian Oil Shale Ash, Oil shale, 33, 260–271.
  • 6. Aljbour S.H. 2019. Intensification of Shale Oil Extraction from Oil Shale – An Alternative Solution for Sustainable Energy in Jordan, Journal of Engineering Science and Technology, 14, 1764–1675.
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  • 8. Ashteyat A.M., Haddad R.H., Yamin M.M. 2012. Production of self-compacting concrete using Jordanian oil shale ash, Jordan Journal of Civil Engineering, 6, 202–214.
  • 9. Asi I., Assa’ad A. 2005. Effect of Jordanian oil shale fly ash on asphalt mixes, Journal of Materials in Civil Engineering, 17, 553–559.
  • 10. Azzam M.O., Al-Ghazawi Z. 2015. Evaluation of incorporating oil shale filler aggregate into hot mix asphalt using Superpave mix design, Construction and Building Materials, 101, 359–379.
  • 11. Azzam M.O., Al-Ghazawi Z., Al-Otoom A. 2016. Incorporation of Jordanian oil shale in hot mix asphalt, Journal of Cleaner Production, 112, 2259–2277.
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  • 14. Gorokhovskii A., Gorokhovskii V., Mescheryakov D., Kopchekchi A. 2002. Glass ceramics based on oil shale ash, Glass Ceramics, 59, 191–193.
  • 15. Hadi N.A.R.A., Khoury H.N., Suliman M.R. 2008. Utilization of bituminous limestone ash from ELLAJJUN area for engineering applications, Acta Geotechnica, 3, 139–151.
  • 16. Hamadi A., Nabih K. 2012. Alkali activation of oil shale ash based ceramics, E-Journal of Chemistry, 9, 1373–1388.
  • 17. Hernandez P., Oregi X., Longo S., Cellura M. 2019. Life-cycle assessment of buildings. Handbook of Energy Efficiency in Buildings (Elsevier).
  • 18. ISO-14040. 2006. Environmental management-Life cycle assessment-Principals and framework. International Standard ISO 14040. In.: International Organization for Standardization-ISO Geneva, Switzerland 2006.
  • 19. Khedaywi T., Al-Qadi A. 2008. Effect of oil shale on fatigue performance of asphalt paving mixtures, Proceedings of ICCBT, 301–314.
  • 20. Komendantova N., Marashdeh L., Al‐Salaymeh A., Al Twassi S., AlBeek R., Hassouneh K. 2022. On the crossroad–renewable energy sources or shale oil? Understanding patterns of social attitudes in Jordan, OPEC Energy Review, 46, 3–30.
  • 21. Laiblová L., Pešta J., Kumar A., Hájek P., Fiala C., Vlach T., Kočí V. 2019. Environmental impact of textile reinforced concrete facades compared to conventional solutions – LCA case study, Materials, 12, 3194.
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Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e93d6d02-cb0c-45af-b645-13d67c6fd97e
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