It is becoming clear that Climate Change is getting sever e . It was reported that the improved ocean heat measurements have a rate of warming upwards from 4 to 5 Hiroshima bomb s liberated heat per second or 388,800 per day. It was reported also that our climate has accumulated the equivalent of a total of more than 2.8 billion Hiroshima bombs’ worth of heat since 1998. Despite this global concern about the effect of global change on environment, it is believed that the problem is much more severe and with greater impact on all facets of life. The effect of Climate Change, especially with a 1 ℃ increase in glob al temperature (from 14 ℃ to 15 ℃ ) is equivalent to the heat liberated from explosion of about 300 million Hiroshima of atomic bomb. This is why this CoP 26 becomes more serious and had targeted year 2060 as a year of zero CO 2 emission. This paper discusses the impact of climate change on ten sectors; water, water desalination, energy, renewable energy supply, health, society, agriculture, economy, industry, and buil t environment.
KeywordsGlobal WarmingImpact of Climate ChangeMajor Impact of Climate ChangePhysics of Climate Change
Cheng, L., Abraham, J., Zhu, J., Trenberth, K.E., Fasullo, J., Boyer, T., et al. (2020) Record-Setting Ocean Warmth Continued in 2019. Advances in Atmospheric Sciences, 37, 137-142. https://doi.org/10.1007/s00376-020-9283-7
Kottasová, I. (2020, January 13) Oceans Are Warming at the Same Rate as If Five Hiroshima Bombs Were Dropped in Every Second. CNN World. https://edition.cnn.com/2020/01/13/world/climate-change-oceans-heat-intl/index.html
Nuccitelli, D. (2020, February 3) Earth Is Heating at a Rate Equivalent to Five Atomic Bombs Per Second. Or Two Hurricane Sandys. Bulletin of atomic Scientists. https://thebulletin.org/2020/02/earth-is-heating-at-a-rate-equivalent-to-five-atomic-bombs-per-second-or-two-hurricane-sandys/
Lindsey, R. And Dahlman, L. (2021, August 12) Climate Change: Global Temperature. Climate.gov. https://www.climate.gov/news-features/understanding-climate/climate-change-global-temperature
Mentaschi, L., Duveiller, G., Zulian, G., Corbane, C., Pesaresi, M., Maes, J., Stocchino, A. and Fe, L. (2022) Global Long-Term Mapping of Surface Temperature Shows Intensified Intra-City Urban Heat Island Extremes. Global Environmental Change, 72, Article ID: 102441.
Zebari, H. (2021, October 29) Cop26 & Politicizing Net-Zero. Middle East Economic Survey (MEES). https://www.mees.com/2021/10/29/op-ed-documents/cop26-politicizing-net-zero/930d3ba0-38b8-11ec-8900-891c08a2e16f
Hürlimann, A.C., Nielsen, J., Moosavi, S., Bush, J., Georgia Warren-Myers, G. and March, A. (2021) Climate Change Preparedness across Sectors of the Built Environment—A Review of Literature. Environmental Science & Policy, 128, 277-289. https://doi.org/10.1016/j.envsci.2021.11.021
Lincoln, S., Buckley, P., Howes, E.L., Maltby, K.M., Pinnegar, J.K., Ali, T.S., Alosairi, Y., Al-Ragum, A., Baglee, A., Balmes, C.O., et al. (2021) A Regional Review of Marine and Coastal Impacts of Climate Change on the ROPME Sea Area. Sustainability, 13, Article No. 13810. https://doi.org/10.3390/su132413810
Banks, M. (2021) Major Physics Labs Join Forces to Tackle Climate Change. Physics World, 34, 11ii. https://doi.org/10.1088/2058-7058/34/12/14
Duke, J.R. and Holt, E.A (2022) Seeing Climate Change: Psychological Distance and Connection to Nature. Environmental Education Research. https://doi.org/10.1080/13504622.2022.2042205
Assan, D., Kuebutornye, F., Mustapha, U., Chen, H. and Li, G. (2020) Effects of Climate Change on Marine Organisms. American Journal of Climate Change, 9, 204-216. https://doi.org/10.4236/ajcc.2020.93013
Smith, C. (2001) Environmental Physics. Routledge Publication, Taylor & Francis Group, London and New York.
Alnaser, W.E. (2003-Updated 2021) Global Warming and Climate Change. Alayam Press, Bahrain.
Archer, D. (2007) Global Warming: Understanding the Forecast. Blackwell Publication, Australia.
Van Vuuren, D.P., Edmonds, J., Kainuma, M., Riahi, K., Thomson, Hibbard, A. Hurtt, K., Kram, G.C.T., Krey, V., Lamarque, J.F., et al. (2011) The Representative Concentration Pathways: An Overview. Climatic Change, 109, Article No. 5. https://doi.org/10.1007/s10584-011-0148-z
Le Quesne, W., Fernand, L., Ali, T. Andres, O. Antonpoulou, M., Burt, J. Dougherty, W., Edson, P., El Kharraz, J., Glavan, J., et al. (2021) Is the Development of Desalination Compatible with Sustainable Development of the Arabian Gulf? Marine Pollution Bulletin, 173, Article ID: 112940. https://doi.org/10.1016/j.marpolbul.2021.112940
Dawoud, M.A. and Al Mulla, M.M. (2012) Environmental Impacts of Seawater Desalination: Arabian Gulf Case Study. International Journal of Environment and Sustainability, 1, 22-37.
Hosseini, H., Saadaoui, I., Moheimani, N., Al Saidi, M., Al Jamali, F., Al Jabri, H. and Ben Hamadou, R. (2021) Marine Health of the Arabian Gulf: Drivers of Pollution and Assessment Approaches Focusing on Desalination Activities. Marine Pollution Bulletin, 164, Article ID: 112085. https://doi.org/10.1016/j.marpolbul.2021.112085
Abu Dhabi Global Environmental Data Initiative (AGEDI) (2016) Final Technical: Regional Desalination and Climate Change. https://www.researchgate.net/publication/311143429_Technical_Report_Regional_Desalination_and_Climate_Change#fullTextFileContent
Abdulaziz, P., Al-Tisan, I., Al-Daili, M., Green, T., Ghani, A. and Javeed, M. (2000) Effects of Environment on Source Water for Desalination Plants on the Eastern Coast of Saudi Arabia. Desalination, 132, 29-40. https://doi.org/10.1016/S0011-9164(00)00132-6
Al-Senafy, M., Al-Fahad, K. and Hadi, K. (2003) Water Management Strategies in the Arabian Gulf Countries. Developments in Water Science, 50, 221-224. https://doi.org/10.1016/S0167-5648(03)80019-9
Al-Saidi, M. (2019) Coastal Development and Climate Risk Reduction in the Persian/Arabian Gulf. In: Harris, P., Ed., Climate Change and Ocean Governance, Cambridge University Press, Cambridge, 60-74. https://doi.org/10.1017/9781108502238.004
Nikolaou, G., Neocleous, D., Christou, A., Kitta, E. and Katsoulas, N. (2020) Implementing Sustainable Irrigation in Water-Scarce Regions under the Impact of Climate Change. Agronomy, 10, Article No. 1120. https://doi.org/10.3390/agronomy10081120
Hamodaa, M.F., Ikram Doniab, N.S. and Al-Attarc, M.S. (2020) Impact Assessment of Desalination Plants on Kuwait Bay Using GIS/Water Quality Index Analysis. Desalination and Water Treatment, 176, 45-50. http://www.deswater.com https://doi.org/10.5004/dwt.2020.25495
Fecht, S. (2019, September 23) How Climate Change Impacts Our Water. News from the Columbia Climate School. https://news.climate.columbia.edu/2019/09/23/climate-change-impacts-water/
Michelan, M.G., Menegaz, M.N., Gonçalves, F.A., Henrique, P., Menezes, B.J. and Tiezzi, R.O. (2021) Estimating the Impact of Climate Change on Water Levels in a Data-Poor River Basin in Southeastern Brazil. Water Policy, 23, 1284-1302. https://doi.org/10.2166/wp.2021.022
United States Environmental Protection Agency (EPA) (2017, January 19) Climate Impacts on Energy. https://19january2017snapshot.epa.gov/climate-impacts/climate-impacts-energy_.html
U.S. Climate Change Science Program (CCSP) and the Subcommittee on Global change Research (2008) Effects of Climate Change on Energy Production and Use in the United States. Wilbanks, T.J., Bhatt, V., Bilello, D.E., Bull, S.R., Ekmann, J., Horak, W.C., Huang, Y.J., Levine, M.D., Sale, M.J., Schmalzer, D.K. and Scott, M.J., Eds., Department of Energy, Office of Biological & Environmental Research, Washington DC.
Dell, J., Tierney, S., Franco, G., Newell, R.G., Richels, R., Weyant, J. and Wilbanks, T.J. (2014) Energy Supply and Use. In: Melillo, J.M., Richmond, T.C. and Yohe, G.W., Eds., Climate Change Impacts in the United States: The Third National Climate Assessment, U.S. Global Change Research Program (USGCRP), Washington DC, Ch. 4, 113-129. https://doi.org/10.7930/J0BG2KWD
CDP (2018) Global Climate Change Analysis https://www.cdp.net/en/research/global-reports/global-climate-change-report-2018
International Renewable Energy Agency (2021) World Adds Record New Renewable Energy Capacity in 2020 Tweet. https://www.irena.org/newsroom/pressreleases/2021/Apr/World-Adds-Record-New-Renewable-Energy-Capacity-in-2020
Gernaat, D.E.H.J., de Boer, H.S., Daioglou, V., Yalew, S.G., Müller, C. and van Vuuren, D.P. (2021) Climate Change Impacts on Renewable Energy Supply. Nature Climate Change, 11, 119-125. https://doi.org/10.1038/s41558-020-00949-9
World Health Organization (2021) Climate Change and Health. https://www.who.int/news-room/fact-sheets/detail/climate-change-and-health
Gaber, A., Hamadeh, R.R., Hassan, D. and Elshirbiny, H. (2020) Impact of Climate Change on Human Health. In: Saab, N. and Habib, R.R., Eds., 2020 Report of the Arab Forum for Environment and Development on Health and the Environment in Arab Countries, Chapter 7, Arab Forum for Environment and Development, Lebanon.
Watts, N., Amann, M., Arnell, N., Ayeb-Karlsson, S., Belesova, K., Boykoff, M. and Montgomery, H. (2019) The 2019 Report of the Lancet Countdown on Health and Climate Change: Ensuring That the Health of a Child Born Today Is Not Defined Bya Changing Climate. Lancet, 394, 1836-1878. https://doi.org/10.1016/S0140-6736(19)32596-6
Khormi, H.M., Kumar, L. and Elzahrany R.A. (2011) Modeling Spatio-Temporal Risk Changes in the Incidence of Dengue Fever in Saudi Arabia: A Geographical Information System Case Study. Geospatial Health, 6, 77-84. https://doi.org/10.4081/gh.2011.159
Gibson, M., Thomsen, J., Launay, F., Harder, E. and DeFelice, N. (2013) Deaths and Medical Visits Attributable to Environmental Pollution in the United Arab Emirates. PLoS ONE, 8, Article ID: e57536. https://doi.org/10.1371/journal.pone.0057536
Maziak, W., Rastam, S., Mzayek, F., Ward, K.D., Eissenberg, T. and Keil, U. (2007) Cardiovascular Health among Adults in Syria: A Model from Developing Countries. Annals of Epidemiology, 17, 713-720. https://doi.org/10.1016/j.annepidem.2007.03.016
UNFCCC (United Nations Framework Convention on Climate Change) (2018) Vulnerability Adaptation: Human Health-Bahrain’s Third National Communication under the United Nations Framework Convention on Climate Change (Unpublished Work).
Tripathi, V., Rais Akhtar, R. and Preetha, G.S. (2021) Perceptions Regarding Climate Change and its Health Impact: Reflections from a Community-Based Study in India. Indian Journal of Community Medicine, 46, 206-209.
Islam, N. and Winkel, J. (2017) Climate Change and Social Inequality. DESA Working Paper No. 152, Department of Economic & Social Affairs, 1-30. https://www.un.org/esa/desa/papers/2017/wp152_2017.pdf
Wi’sniewski, B.M. (2020) The Formation of a Pluralistic Society and Its Impact on Climate Change—Implementation of the Lifelong Learning Concept. Oceanologia, 62, 588-592. https://doi.org/10.1016/j.oceano.2020.03.009
Ding, Y.J., Li, C.-Y., Wang, X., Wang, Y., Wang, S., Chang, Y., Qin, J., Wang, S., Zhao, Q. and Wang, Z. (2021) An Overview of Climate Change Impacts on the Society in China. Advances in Climate Change Research, 12, 210-223. https://doi.org/10.1016/j.accre.2021.03.002
Arafat, I.E. and Maklad, T.N. (2021) Modeling Climate Change Impact on Irrigation Water Requirement and Yield of Mango (Mangifera indica L.) in Egypt. Fundamental and Applied Agriculture, 6, 155-162. https://doi.org/10.5455/faa.79789
Iglesias, A., Garrote, L., Quiroga, S. and Moneo, M. (2009) Impacts of Climate Change in Agriculture in Europe. PESETA-Agriculture Study. Office for Official Publications of the European Communities, Spain. http://www.eurosfaire.prd.fr/7pc/doc/1260198300_climate_change_agriculture_jrc55386.pdf
Cho, R. (2019, December 27) 10 Climate Change Impacts That Will Affect Us All. Columbia Climate School. https://news.climate.columbia.edu/2019/12/27/climate-change-impacts-everyone/
Abdul Wahab, A.H. (2021) Private Communication: Professor of Agriculture. Arabian Gulf University, Kingdom of Bahrain.
Oo, A.T., Huylenbroeck, G.V. and Speelman, S. (2020) Measuring the Economic Impact of Climate Change on Crop Production in the Dry Zone of Myanmar: A Ricardian Approach. Climate, 8, Article No. 9. https://doi.org/10.3390/cli8010009
Liu, Y., Li, N., Zhang, Z., Huang, C., Chen, X. and Wang, F. (2020) Climate Change Effects on Agricultural Production: The Regional and Sectoral Economic Consequences in China. Earth’s Future, 7, Article ID: e2020EF001617. https://doi.org/10.1029/2020EF001617
Duva, N. (2014) Seven Industries at Greatest Risk from Climate Change. Consumer News and Business Channel (CNBC). https://www.cnbc.com/2014/10/22/7-industries-at-greatest-risk-from-climate-change.html
Giulia, U. and Zinzi, M. (2021) Introducing the Built Environment in a Changing Climate: Interactions, Challenges, and Perspectives. Climate, 9, Article No. 104. https://doi.org/10.3390/cli9070104
Barron-Gafford, G., Minor, R., Allen, N., Cronin, A.D., Brooks, A.E. and Pavao-Zuckerman, M.A. (2016) The Photovoltaic Heat Island Effect: Larger Solar Power Plants Increase Local Temperatures. Scientific Reports, 6, Article No. 35070. https://doi.org/10.1038/srep35070
Blythe, B. (2021, December 14) New Ally in Climate Change Battle: Digital Natural Gas. Open Market. https://www.cmegroup.com/openmarkets/energy/New-Ally-in-Climate-Change-Battle-Digital-Natural-Gas.html?utm_source=twitter&utm_medium=paid_social&utm_campaign=openmarkets&utm_content=evergreen&utm_kxconfid=vnl4uf4pq
Alajmi, S. (2021) Energy Transition in GCC Countries. World Green Growth Summit, Dubai, UAE, 17-19th November 2021.
Chowdhury, F. I., Alnuaimi, A., Alkis, S., Okyay, A. K., Nayfeh, M. and Nayfeh, A. (2015) ~23% Increase in Efficiency of 100 nm Thin Film a-si Solar Cells Using Combination of Si/InN and Au Nanoparticles. IEEE 42nd Photovoltaic Specialist Conference, New Orleans, 14-19 June 2015, 1-4. https://doi.org/10.1109/PVSC.2015.7356306
Ghasemzadeh, F. and Shayan, M.E. (2021) Nanotechnology in the Service of Solar Energy Systems. In: Sen, M., Ed., Nanotechnology and the Environment, IntechOpen, London, 1-15. https://doi.org/10.5772/intechopen.93014
Brower, A. (2021) How the Built Environment Can Help the Climate Crisis. Gensler Research and Insight. https://www.gensler.com/blog/how-the-built-environment-can-help-the-climate-crisis
Ortiz, A., Velasco, M.J., Esbri, O., Medina, V. and Russo, B. (2021) The Economic Impact of Climate Change on Urban Drainage Master Planning in Barcelona. Sustainability, 13, Article No. 71. https://doi.org/10.3390/su13010071