Evaluation of CO۲ Emissions Reduction Strategies in the Iranian Cement Industry

سال انتشار: 1400
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 365

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شناسه ملی سند علمی:

JR_JCEMA-5-3_001

تاریخ نمایه سازی: 5 دی 1400

چکیده مقاله:

Portland cement as the main constituent of conventional concrete is the most widely used cementitious material in the construction industry. But Portland cement production has major environmental disadvantages, including high energy consumption and carbon dioxide (CO۲) emissions. So that production of Portland cement is accounted for ۷ to ۱۰% of global CO۲ emissions. Considering the amount of Portland cement production and CO۲ emissions in Iran, it can be concluded that Iran is facing environmental problems caused by cement production. Hence, various CO۲ emissions mitigation strategies of Iranian cement industry have been evaluated in this study. This research work applied Analytical Hierarchy Process (AHP) method to evaluate and prioritize mitigation strategies. The obtained results showed that among the ۱۶ strategies studied, clinker substitution (blended cement) and production of low carbon cements such as geopolymer cement were recognized as the most important strategies to reduce CO۲ emissions in the Iranian cement industry.

نویسندگان

Amir Bahador Moradikhou

Department of Civil Engineering, Science and Research Branch, Islamic Azad University, Tehran, Iran.

Mehdi Ravanshadnia

Department of Civil Engineering, Science and Research Branch, Islamic Azad University, Tehran, Iran.

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  • Moradikhou AB, Esparham A, Avanaki MJ. Effect of Hybrid Fibers ...
  • Esparham A, Moradikhou AB, Jamshidi Avanaki M. Effect of Various ...
  • Behnood A, Golafshani EM. Predicting the compressive strength of silica ...
  • Moradikhou AB, Esparham A, Avanaki MJ. Physical & mechanical properties ...
  • Lei Y, Zhang Q, Nielsen C, He K. An inventory ...
  • Hasanbeigi A, Price L, Lin E. Emerging energy-efficiency and CO۲ ...
  • Salas DA, Ramirez AD, Rodríguez CR, Petroche DM, Boero AJ, ...
  • IEA, Global cement production, ۲۰۱۰-۲۰۱۹, IEA, Paris https://www.iea.org/data-and-statistics/charts/global-cement-production-۲۰۱۰-۲۰۱۹. [View at ...
  • Friedlingstein P, O'sullivan M, Jones MW, Andrew RM, Hauck J, ...
  • Gielen D, Taylor P. Indicators for industrial energy efficiency in ...
  • Garg A, Shukla PR, Kankal B, Mahapatra D. CO۲ emission ...
  • Georgiopoulou M, Lyberatos G. Life cycle assessment of the use ...
  • Cadez S, Czerny A. Climate change mitigation strategies in carbon-intensive ...
  • Rosković R, Bjegović D. Role of mineral additions in reducing ...
  • Hosseini MH, Mousavi Kashi A, Emami F, Esparham A. Effect ...
  • Shobeiri V, Bennett B, Xie T, Visintin P. A comprehensive ...
  • Esparham A, Moradikhou AB, Andalib FK, Avanaki MJ. Strength characteristics ...
  • Herrera B, Amell A, Chejne F, Cacua K, Manrique R, ...
  • Borade AB, Kannan G, Bansod SV. Analytical hierarchy process-based framework ...
  • Govindan K, Kaliyan M, Kannan D, Haq AN. Barriers analysis ...
  • Saaty TL. How to make a decision: the analytic hierarchy ...
  • Balsara S, Jain PK, Ramesh A. An integrated approach using ...
  • DoIPP, Report of the Working group on Cement Industry for ...
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