Thapar S. Energy and Climate Change. In: Renewable Energy: Policies, Project Management and Economics. Springer; 2024. doi: 10.1007/978-981-99-9384-0_1
Resplandy L, Keeling RF, Eddebbar Y, et al. Quantification of ocean heat uptake from changes in atmospheric O2 and CO2 composition. Scientific Reports. 2019; 9(1). doi: 10.1038/s41598-019-56490-z
Yang H, Zhao Y, Liu Z, et al. Heat transport compensation in atmosphere and ocean over the past 22,000 years. Scientific Reports. 2015; 5(1). doi: 10.1038/srep16661
Li G, Cheng L, Zhu J, et al. Increasing ocean stratification over the past half-century. Nature Climate Change. 2020; 10(12): 1116-1123. doi: 10.1038/s41558-020-00918-2
Zanna L, Khatiwala S, Gregory JM, et al. Global reconstruction of historical ocean heat storage and transport. Proceedings of the National Academy of Sciences. 2019; 116(4): 1126-1131. doi: 10.1073/pnas.1808838115
Rogers DP. Air-sea interaction: Connecting the ocean and atmosphere. Reviews of Geophysics. 1995; 33(S2): 1377-1383. doi: 10.1029/95rg00255
Cheng L, Abraham J, Trenberth KE, et al. New record ocean temperatures and related climate indicators in 2023. Advances in Atmospheric Sciences. 2024; 2024: 1-15. doi: 10.1007/S00376-024-3378-5/METRICS
Pidwirny M. Global heat balance: Introduction to heat fluxes. In: Fundamentals of Physical Geography, 2nd ed. Rowman & Littlefield; 2006.
Greenaway SF, Sullivan KD, Umfress SH, et al. Revised depth of the Challenger Deep from submersible transects; including a general method for precise, pressure-derived depths in the ocean. Deep Sea Research Part I: Oceanographic Research Papers. 2021; 178
von Schuckmann K, Minière A, Gues F, et al. Heat stored in the Earth system 1960-2020: where does the energy go? Earth System Science Data. 2023; 15(4): 1675-1709. doi: 10.5194/essd-15-1675-2023
Hassan Q, Viktor P, J. Al-Musawi T, et al. The renewable energy role in the global energy transformations. Renewable Energy Focus. 2024; 48: 100545. doi: 10.1016/j.ref.2024.100545
Rau GH, Baird JR. Negative-CO2-emissions ocean thermal energy conversion. Renewable and Sustainable Energy Reviews. 2018; 95: 265-272. doi: 10.1016/j.rser.2018.07.027
Perez M, Perez R. Update 2022 - A fundamental look at supply side energy reserves for the planet. Solar Energy Advances. 2021; 2: 100014. doi: 10.1016/j.seja.2022.100014
Trenberth KE, Caron JM. Estimates of meridional atmosphere and ocean heat transports. Journal of Climate. 2001; 3433-3443. doi: 10.1175/1520-0442(2001)014<3433:EOMAAO>2.0.CO;2
Oh JH, Kug JS, An SI, et al. Emergent climate change patterns originating from deep ocean warming in climate mitigation scenarios. Nature Climate Change. 2024; 14(3): 260-266. doi: 10.1038/s41558-024-01928-0
Chan CW, Siqueiros E, Ling-Chin J, et al. Heat utilisation technologies: A critical review of heat pipes. Renewable and Sustainable Energy Reviews. 2015; 50: 615-627. doi: 10.1016/j.rser.2015.05.028
Liang X, Spall M, Wunsch C. Global ocean vertical velocity from a dynamically consistent ocean state estimate. Journal of Geophysical Research: Oceans. 2017; 122(10): 8208-8224. doi: 10.1002/2017jc012985
Levitus S, Antonov JI, Boyer TP, et al. World ocean heat content and thermosteric sea level change (0-2000 m), 1955-2010. Geophysical Research Letters. 2012; 39(10). doi: 10.1029/2012gl051106
Vecellio DJ, Kong Q, Kenney WL, et al. Greatly enhanced risk to humans as a consequence of empirically determined lower moist heat stress tolerance. Proceedings of the National Academy of Sciences. 2023; 120(42). doi: 10.1073/pnas.2305427120
Wang X, Lu Y, Chen C, et al. Total-factor energy efficiency of ten major global energy-consuming countries. Journal of Environmental Sciences. 2024; 137: 41-52. doi: 10.1016/j.jes.2023.02.031
Nihous GC. A preliminary assessment of ocean thermal energy conversion resources. Journal of Energy Resources Technology. 2006; 129(1): 10-17. doi: 10.1115/1.2424965
Manikowski AF. Deep water condenser OTEC using carbon dioxide working fluid. In: Proceedings of “Challenges of Our Changing Global Environment”; 9-12 October 1995; San Diego, California, USA; 1995. pp. 1092-1099. doi: 10.1109/oceans.1995.528578
Fallis A. Waste heat recovery: Technology and opportunities in U.S. industry. Journal of Chemical Information and Modeling. 2013; 53(9): 1689-1699.
Zevenhoven R, Beyene A. The relative contribution of waste heat from power plants to global warming. Energy. 2011; 36(6): 3754-3762. doi: 10.1016/j.energy.2010.10.010
Haider Q. Nuclear Fusion: One Noble Goal and a Variety of Scientific and Technological Challenges. BoD-Books on Demand; 2019. doi: 10.5772/intechopen.82335
Murphy TWJ. Energy and Human Ambitions on a Finite Planet. eScholarship; 2021. pp. 7-17. doi: 10.21221/S2978-0-578-86717-5
Arli F, Dumrul H, Taskesen E. Hydrogen Production from Solar Water Splitting Using Photocatalytic and Photoelectrochemical Technologies. BIDGE Publ.; 2023. pp. 107-140.
Michaelis D. Energy island. In: Proceedings of Oceans 2003: Celebrating the Past... Teaming Toward the Future. 22-26 September 2003; San Diego, CA, USA. pp. 2294-2302. doi: 10.1109/OCEANS.2003.178267
Rajagopalan K, Nihous GC. An assessment of global ocean thermal energy conversion resources with a high-resolution ocean general circulation model. Journal of Energy Resources Technology. 2013; 135(4). doi: 10.1115/1.4023868
Denholm P, Hand M, Jackson M, et al. Land Use Requirements of Modern Wind Power Plants in the United States. Office of Scientific and Technical Information (OSTI); 2009. doi: 10.2172/964608
Dumrul H, Fatih AR, Taşkesen E. Dust effect on PV modules: Its cleaning methods. In: Innovative Research in Engineering. Duvar Publishing; 2023.
Vega LA, Michaelis D. First generation 50 MW OTEC plantship for the production of electricity and desalinated water. Presented at the Offshore Technology Conference; May 2010; Houston, Texas, USA. doi: 10.4043/20957-ms
Adiputra R, Utsunomiya T, Koto J, et al. Preliminary design of a 100 MW-net ocean thermal energy conversion (OTEC) power plant study case: Mentawai island, Indonesia. Journal of Marine Science and Technology. 2019; 25(1): 48-68. doi: 10.1007/s00773-019-00630-7
Hurtt J, Pellen A, Nagurny J. OTEC power efficiency challenges. In: Proceedings of the Offshore Technology Conference; May 2010; Houston, Texas, USA. doi: 10.4043/20498-MS
Smalley RE. Future global energy prosperity: The terawatt challenge. MRS Bulletin. 2005; 30(6): 412-417. doi: 10.1557/mrs2005.124
Diallo MS, Kotte MR, Cho M. Mining Critical metals and elements from seawater: Opportunities and challenges. Environmental Science & Technology. 2015; 49(16): 9390-9399. doi: 10.1021/acs.est.5b00463
Henderson GM. Ocean trace element cycles. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. 2016; 374(2081): 20150300. doi: 10.1098/rsta.2015.0300
harette M, Smith W. The volume of earth’s ocean. Oceanography. 2010; 23(2): 112-114. doi: 10.5670/oceanog.2010.51
Shaterabadi M, Sadeghi S, Jirdehi MA. The role of green hydrogen in achieving low and net-zero carbon emissions: Climate change and global warming. In: Vahidinasab V, Mohammadi-Ivatloo B, Shiun Lim J (editors). Green Hydrogen in Power Systems. Springer; 2024. pp. 141-153. doi: 10.1007/978-3-031-52429-5_6
Dirik R, Taşkesen E, Dirik Ö. Using artificial intelligence in renewable energy sources (Turkish). Int Conf Recent Acad Stud. 2023; 1(1): 28-35. doi: 10.59287/icras.667
Hansen JE, Sato M, Simons L, et al. Global warming in the pipeline. Oxford Open Climate Change. 2023; 3(1). doi: 10.1093/oxfclm/kgad008
Caldwell Z. Climate Migration. CQ Press; 2023. doi: 10.4135/cqresrre20231013
Baird J. The Diverse Energy Potential of the Water Carrier Hydrogen. Climate CoLab; 2015.
Roquet F, Ferreira D, Caneill R, et al. Unique thermal expansion properties of water key to the formation of sea ice on Earth. Science Advances. 2022; 8(46). doi: 10.1126/sciadv.abq0793
Hugonnet R, McNabb R, Berthier E, et al. Accelerated global glacier mass loss in the early twenty-first century. Nature. 2021; 592(7856): 726-731. doi: 10.1038/s41586-021-03436-z
Vidler F. Accountability for CO2 Climate Crisis by Carbon Majors’ Emissions in Oil and Gas Production? Available online:
https://ssrn.com/abstract=4403449 (accessed on 11 March 2024).
Rau GH, Carroll SA, Bourcier WL, et al. Direct electrolytic dissolution of silicate minerals for air CO2 mitigation and carbon-negative H2 production. Proceedings of the National Academy of Sciences. 2013; 110(25): 10095-10100. doi: 10.1073/pnas.1222358110
Shepherd JM. Carbon, climate change, and controversy. Animal Frontiers. 2011; 1(1): 5-13. doi: 10.2527/af.2011-0001
Martel L, Smith P, Rizea S, et al. Ocean Thermal Energy Conversion Life Cycle Cost Assessment, Final Technical Report, 30 May 2012. Office of Scientific and Technical Information (OSTI); 2012. doi: 10.2172/1045340
Vega LA. Economies of ocean thermal energy conversion (OTEC): An update. Proceedings of the Annual Offshore Technology Conference. 2010; 4: 3239-3256. doi: 10.4043/21016-MS
Srinivasan N, Sridhar M, Agrawal M. Study on the cost effective ocean thermal energy conversion power plant. Presented at the 2010 Offshore Technology Conference; 3-6 May 2010; Houston, Texas, USA. doi: 10.2523/20340-MS
Xiao C, Gulfam R. Opinion on ocean thermal energy conversion (OTEC). Frontiers in Energy Research. 2023; 11: 1115695. doi: 10.3389/fenrg.2023.1115695
Gajdzik B, Wolniak R, Nagaj R, et al. The influence of the global energy crisis on energy efficiency: A comprehensive analysis. Energies. 2024; 17(4): 947. doi: 10.3390/en17040947
Langer J, Quist J, Blok K. Upscaling scenarios for ocean thermal energy conversion with technological learning in Indonesia and their global relevance. Renewable and Sustainable Energy Reviews. 2022; 158: 112086. doi: 10.1016/j.rser.2022.112086
Stern N. The stern review on the economic effects of climate change. Population and Development Review. 2006; 32(4): 793-798. doi: 10.1111/j.1728-4457.2006.00153.x
Vakulchuk R, Overland I. The failure to decarbonize the global energy education system: Carbon lock-in and stranded skill sets. Energy Research & Social Science. 2024; 110: 103446. doi: 10.1016/j.erss.2024.103446
Unctad. Review of maritime transport 2023—Chapter 2: World Shipping Fleet, Services, and Freight Rates. Available online:
https://shop.un.org/ (accessed on 13 March 2024).
Irving L. The precipitation of calcium and magnesium from sea water. Journal of the Marine Biological Association of the United Kingdom. 1926; 14(2): 441-446. doi: 10.1017/s002531540000792x
Sharkh BA, Al-Amoudi AA, Farooque M, et al. Seawater desalination concentrate—A new frontier for sustainable mining of valuable minerals. npj Clean Water. 2022; 5(1). doi: 10.1038/s41545-022-00153-6
Taşkesen E, İlbeyoğlu S, Üren R. Evaluation of Coronavirus in Terms of Occupational Health and Safety. YAZ; 2023. pp. 119-139.
United States Government Accountability Office. NAVY AIRCRAFT cost-effectiveness of conventionally and nuclear-powered carriers. Available online:
https://www.gao.gov/products/nsiad-98-1 (accessed on 4 April 2024).