Vulnerability Assessment of Iranian Petrochemical Industry from Climate Change Consequences to Analyses Risks and Opportunities

Document Type : Original Article

Authors
1 Scientific Faculty Member of Energy and Environment Research Center, Research Institute of Petroleum Industry, Tehran, Iran
2 Vira Sustainable Processes, Tehran, Iran
3 National Iranian Petrochemical Company, Tehran, Iran
Abstract
The purpose of this study is to identify and predict possible damages caused by climate change on Iranian petrochemical industry, to identify the influential aspects of climate change, and to explain the most affected industrial activities from climate change, and finally to analyse risks and opportunities. ISO 14091 standard has been used to compile the methodology of this study. The geographical scope of the study included the entire country in 10 meteorological stations (corresponding to the areas with petrochemical industry) and the time frame of the analysis included the next 25 years (2025 to 2050). A total of 12 climate variables have been investigated,18 influential aspects of the petrochemical industry from changes in climatic variables and their consequences (climatic risks) were identified and evaluated based on 12 climatic variables and their changes in different regions of the country (17 trends-regions in total). The results of this study showed that the most significant risks in the petrochemical industry due to climate change are increase in temperature, number of hot days and torrential rains in all regions, relative humidity increase in all regions except Asalouyeh, drought increase in all regions except Asaluyeh and Shiraz, increase in wind speed in all regions except Mahshahr, and increase in water temperature and sea acidity at the coasts of Oman and the Persian Gulf. The most important consequences of these changes include the increase in energy consumption and energy price, depreciation of facilities, increase in operating costs and disturbance in sustainable production, and increase in safety, health and environmental risks. It was also concluded that the most important future opportunities for the petrochemical industry are in the scope of reducing depreciation and damage to equipment in the southern regions of the country (Asaluyeh and Shiraz) and after that, increasing access to energy and feed resources and reducing health and safety risks will be the most important opportunities in all regions of the country.

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  1. D. N. Fredric Bauer, "Petrochemicals and Climate Change: Corporate power, networks and international governance," 2021.
  2. J. Anastas PT, Green chemistry: theory and practice, London: Oxford University Press, 1998.
  3. Minovi, "The Chemical Industry: An Overlooked Driver of Climate Change," Center for Progressive Reform.
  4. G. &. S. B. Joel Tickner, "Transitioning the Chemical Industry: The Case for Addressing the Climate, Toxics, and Plastics Crises," Environment: Science and Policy for Sustainable Development, Vols. 63-6, pp. 4-15, 2021.
  5. "CGE Training Materials for Vulnerability and Adaptation Assessment Chapter 2 Vulnerability and Adaptation Frameworks".
  6. [Online]. Available: https://www.ipcc.ch/pdf/special-reports/ipcc-technical-guidelines-1994n.pdf. [Accessed 2022].
  7. "ADAPTATION POLICY FRAMEWORKS FOR CLIMATE CHANGE: DEVELOPING STRATEGIES, POLICIES AND MEASURES," IPCC, 2004.
  8. [Online]. Available: chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://sustainabledevelopment.un.org/content/documents/951013_Toolkit%20for%20Designing%20Climate%20Change%20Adaptation%20Initiatives.pdf. [Accessed 2022].
  9. [Online]. Available: http://www.undp.org/content/undp/en/home/librarypage/environment-energy/low_emission_climateresilientdevelopment/applying-climate-information-for-adaptation-decision-making.html. [Accessed 2022].
  10. [Online]. Available: https://unfccc.int/files/adaptation/cancun_adaptation_framework/application/pdf/naptechguidelines_eng_high__res.pdf. [Accessed 2022].
  11. [Online]. Available: http://www.unep.org/provia/RESOURCES/Publications/PROVIAGuidancereport/tabid/130752/Default.aspx. [Accessed 2022].
  12. [Online]. Available: https://gc21.giz.de/ibt/var/app/wp342deP/1443/index.php/knowledge/vulnerability-assessment/vulnerability-sourcebook/. [Accessed 2022].
  13. "ISO 14091 - Adaptation to climate change — Guidelines on vulnerability, impacts and risk assessment," 2021.
  14. Thang T.X. Nguyen, Jarbas Bonetti, Kerrylee Rogers, Colin D. Woodroffe, Indicator-based assessment of climate-change impacts on coasts: A review of concepts, methodological approaches and vulnerability indices, Ocean & Coastal Management, Volume 123, 2016, Pages 18-43, ISSN 0964-5691,
  15. Benjamin K. Sovacool, Steve Griffiths, Jinsoo Kim, Morgan Bazilian, Climate change and industrial F-gases: A critical and systematic review of developments, sociotechnical systems and policy options for reducing synthetic greenhouse gas emissions, Renewable and Sustainable Energy Reviews, Volume 141, 2021, 110759, ISSN 1364-0321,.
  16. Geoffrey R. Mitchell, Climate Change and Manufacturing, Procedia Manufacturing, Volume 12, 2017, Pages 298-306, ISSN 2351-9789,.
  17. O’Brien, K., Eriksen, S., Linda Sygna, & Lars Otto Naess. (2006). Questioning Complacency: Climate Change Impacts, Vulnerability, and Adaptation in Norway. Ambio, 35(2), 50–56. http://www.jstor.org/stable/4315686.
  18. Harrison, P. Holman, Ian. Berry, P. 2015/02/01, 153  - 167, Assessing cross-sectoral climate change impacts, vulnerability and adaptation: an introduction to the CLIMSAVE project, VL  - 128, 10.1007/s10584-015-1324-3, Climatic Change.
  19. Jones, R.N. An Environmental Risk Assessment/Management Framework for Climate Change Impact Assessments. Natural Hazards 23, 197–230 (2001).
  20. Faryadras, A., & Maleki, A. (2023). Window to the Concept of Peak Oil and Policy Implications: Case of Iran. Iranian Journal of Public Policy, 9(3), 78-99. doi: 10.22059/jppolicy.2023.95724.
  21. Visser, H., Petersen, A.C. & Ligtvoet, W. On the relation between weather-related disaster impacts, vulnerability and climate change. Climatic Change 125, 461–477 (2014). https://doi.org/10.1007/s10584-014-1179-z.
  22. Iran's Initial National Communication to United Nations Framework Convention on Climate Change (UNFCCC) / Prepared by department of Environment, National Climate Change Office with cooperation of the United Nations Development Programme (UNDP).

  • Receive Date 29 August 2024
  • Revise Date 27 September 2024
  • Accept Date 09 November 2024