Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2024, Cilt: 11 Sayı: 2, 29 - 37, 16.06.2024
https://doi.org/10.30897/ijegeo.1480096

Öz

Kaynakça

  • Ajanovic, A., Sayer, M., Haas, R. (2022). The economics and the environmental benignity of different colors of hydrogen. International Journal of Hydrogen Energy, 47(57), 24136-24154.
  • Alabool, H. M. (2023). ChatGPT in Education: SWOT analysis approach. Paper presented at the 2023 International Conference on Information Technology (ICIT).
  • Arcos, J. M. M., Santos, D. M. (2023). The hydrogen color spectrum: techno-economic analysis of the available technologies for hydrogen production. Gases, 3(1), 25-46.
  • Atilhan, S., Park, S., El-Halwagi, M. M., Atilhan, M., Moore, M., Nielsen, R. B. (2021). Green hydrogen as an alternative fuel for the shipping industry. Current Opinion in Chemical Engineering, 31, 100668.
  • Balcombe, P., Brierley, J., Lewis, C., Skatvedt, L., Speirs, J., Hawkes, A., Staffell, I. (2019). How to decarbonise international shipping: Options for fuels, technologies and policies. Energy conversion and management, 182, 72-88.
  • Baldi, F., Moret, S., Tammi, K., Maréchal, F. (2020). The role of solid oxide fuel cells in future ship energy systems. Energy, 194, 116811.
  • Benzaghta, M. A., Elwalda, A., Mousa, M. M., Erkan, I., Rahman, M. (2021). SWOT analysis applications: An integrative literature review. Journal of Global Business Insights, 6(1), 54-72.
  • Bolat, P., Kayişoğlu, G., Gunes, E., Kizilay, F., Ozsogut, S. (2020). Weighting key factors for port congestion by AHP method. Journal of ETA maritime science, 8(4). Celik, M. S., Akyar, D. A., Ceylan, B. O. (2024). Navigating environmental sustainability in ship recycling industry: Integrated SWOT-TOWS-ANP approach. Ocean Engineering, 295, 116906. Chang, O. H., Chow, C. W. (1999). The balanced scorecard: A potential tool for supporting change and continuous improvement in accounting education. Issues in Accounting Education, 14(3), 395-412. Chermack, T. J., Kasshanna, B. K. (2007). The use and misuse of SWOT analysis and implications for HRD professionals. Human Resource Development International, 10(4), 383-399.
  • Dehghanimohammadabadi, M., Kabadayi, N. (2020). A two-stage AHP multi-objective simulation optimization approach in healthcare. International Journal of the Analytic Hierarchy Process, 12(1).
  • Depken, J., Dyck, A., Roß, L., Ehlers, S. (2022). Safety considerations of hydrogen application in shipping in comparison to LNG. Energies, 15(9), 3250.
  • Gray, N., McDonagh, S., O'Shea, R., Smyth, B., Murphy, J. D. (2021). Decarbonising ships, planes and trucks: An analysis of suitable low-carbon fuels for the maritime, aviation and haulage sectors. Advances in Applied Energy, 1, 100008.
  • Hoang, A. T., Pandey, A., De Osés, F. J. M., Chen, W.-H., Said, Z., Ng, K. H., . . . Nguyen, X. P. (2023). Technological solutions for boosting hydrogen role in decarbonization strategies and net-zero goals of world shipping: Challenges and perspectives. Renewable and Sustainable Energy Reviews, 188, 113790.
  • IMO. (2018). Initial Greenhouse Gas Strategy.
  • IMO. (2020). The Fourth IMO GHG Study -Reduction of GHG Emissions from Ships
  • IMO. (2021). IMO data collection system. https://www.imo.org/
  • Inal, O. B., Deniz, C. (2018). Fuel cell availability for merchant ships. Paper presented at the 3rd International Symposium on Naval Architecture and Maritime (INT-NAM 2018), stanbul, Turkey.
  • Inal, O. B., Zincir, B., Deniz, C. (2022). Investigation on the decarbonization of shipping: An approach to hydrogen and ammonia. International Journal of Hydrogen Energy, 47(45), 19888-19900.
  • Incer-Valverde, J., Korayem, A., Tsatsaronis, G., Morosuk, T. (2023). “Colors” of hydrogen: Definitions and carbon intensity. Energy conversion and management, 291, 117294.
  • Johnston, C., Khan, M. H. A., Amal, R., Daiyan, R., MacGill, I. (2022). Shipping the sunshine: An open-source model for costing renewable hydrogen transport from Australia. International Journal of Hydrogen Energy, 47(47), 20362-20377.
  • Khan, A. U., Ali, Y. (2020). Analytical hierarchy process (AHP) and analytic network process methods and their applications: a twenty year review from 2000-2019: AHP & ANP techniques and their applications: Twenty years review from 2000 to 2019. International Journal of the Analytic Hierarchy Process, 12(3).
  • Kim, T.-e., Mallam, S. (2020). A Delphi-AHP study on STCW leadership competence in the age of autonomous maritime operations. WMU Journal of Maritime Affairs, 19(2), 163-181.
  • Kostić-Ljubisavljević, A., Samčović, A. (2024). Selection of available GIS software for education of students of telecommunications engineering by AHP methodology. Education and Information Technologies, 29(4), 5001-5015.
  • Lubbe, F., Rongé, J., Bosserez, T., Martens, J. A. (2023). Golden hydrogen. Current Opinion in Green and Sustainable Chemistry, 39, 100732.
  • Mallouppas, G., Yfantis, E. A. (2021). Decarbonization in shipping industry: A review of research, technology development, and innovation proposals. Journal of Marine Science and Engineering, 9(4), 415.
  • Ngene, P., Radeva, T., Slaman, M., Westerwaal, R. J., Schreuders, H., Dam, B. (2014). Seeing hydrogen in colors: low‐cost and highly sensitive eye readable hydrogen detectors. Advanced Functional Materials, 24(16), 2374-2382.
  • Rabia, M. A. B., Bellabdaoui, A. (2023). Collaborative intuitionistic fuzzy-AHP to evaluate simulation-based analytics for freight transport. Expert Systems with Applications, 225, 120116.
  • Rattazzi, D., Rivarolo, M., Massardo, A. F. (2021). An innovative tool for the evaluation and comparison of different fuels and technologies onboard ships. Paper presented at the E3S web of conferences.
  • Rivarolo, M., Rattazzi, D., Lamberti, T., Magistri, L. (2020). Clean energy production by PEM fuel cells on tourist ships: A time-dependent analysis. International Journal of Hydrogen Energy, 45(47), 25747-25757.
  • Saaty, T. L. (1980). The analytic hierarchy process (AHP). The Journal of the Operational Research Society, 41(11), 1073-1076.
  • Sahin, B., Senol, Y. E. (2015). A novel process model for marine accident analysis by using generic fuzzy-AHP algorithm. The Journal of Navigation, 68(1), 162-183.
  • Sahin, B., Senol, Y. E., Bulut, E., Duru, O. (2015). Optimizing technology selection in maritime logistics. Research in Logistics & Production, 5(3), 299-309. Schuler, J., Ardone, A., Fichtner, W. (2023). A review of shipping cost projections for hydrogen-based energy carriers. International Journal of Hydrogen Energy.
  • Sevim, C., Zincir, B. (2022a). Biodiesel and renewable diesel as a drop-in fuel for decarbonized maritime transportation Potential and Challenges of Low Carbon Fuels for Sustainable Transport (pp. 319-345): Springer.
  • Sevim, C., Zincir, B. (2022b). Comparison of Biofuels for Decarbonized Maritime Transportation. Paper presented at the International Symposium on Energy Management and Sustainability.
  • Sevim, C., Zincir, B. (2023). Lifecycle Emissions of Fossil Fuels and Biofuels for Maritime Transportation: A Requirement Analysis Decarbonization of Maritime Transport (pp. 27-44): Springer.
  • Sha, X., Liu, X. (2022). Research on the Construction of Public Policy Evaluation System of New Employment Pattern Development based on AHP. Paper presented at the 2022 2nd International Conference on Business Administration and Data Science (BADS 2022).
  • Sormaz, Ü., Yilmaz, M., Özata, E., Büyükyildirim, C. (2023). Burdur İlinin Gastronomi Turizmi Potansiyelinin Swot Analizi ile Değerlendirilmesi (Evaluation of the Gastronomic Tourism Potential of Burdur Province By Swot Analysis). Journal of Tourism & Gastronomy Studies, 11(2), 1262-1279.
  • Şahin, B., Şenol, Y. E., Ve Kartal, Ş. (2014). SWOT Analysis Of Transportation In The Arctic Region. Paper presented at the LM-SCM 2014 XII. International Logistics And Supply Chain Congress.
  • Şenol, Y., Gökçek, V., Seyhan, A. (2017). SWOT-AHP analysis of autonomous shipping. Paper presented at the 4th International Multidisciplinary Congress of Eurasia Proceedings.
  • Van Hoecke, L., Laffineur, L., Campe, R., Perreault, P., Verbruggen, S. W., Lenaerts, S. (2021). Challenges in the use of hydrogen for maritime applications. Energy & Environmental Science, 14(2), 815-843.
  • Wahab, S. N., Ahmed, N., Ab Talib, M. S. (2023). An overview of the SWOT analysis in India's pharmaceutical supply chain. Arab Gulf Journal of Scientific Research.
  • Yang, M., Chen, J., Zhou, Y. (2020). Comprehensive evaluation model of maritime industrial economic activities based on an AHP and BP neural network. Journal of Coastal Research, 111(SI), 178-182.
  • Zekhnini, K., Cherrafi, A., Bouhaddou, I., Benghabrit, Y. (2021). Analytic hierarchy process (AHP) for supply chain 4.0 risks management. Paper presented at the Artificial Intelligence and Industrial Applications: Smart Operation Management.
  • Zincir, B. (2020). A short review of ammonia as an alternative marine fuel for decarbonised maritime transportation. Proceedings of the ICEESEN2020, Kayseri, Turkey, 19-21.
  • Zincir, B., Shukla, P. C., Agarwal, A. K. (2023). Introduction to Decarbonization of Maritime Transport Decarbonization of Maritime Transport (pp. 3-7): Springer.

SWOT-AHP Analysis of Different Colours of Hydrogen for Decarbonization of Shipping

Yıl 2024, Cilt: 11 Sayı: 2, 29 - 37, 16.06.2024
https://doi.org/10.30897/ijegeo.1480096

Öz

Maritime transportation has experienced significant growth since 1990, with its use surging by over 150%, constituting approximately 90% of global transportation for goods transfer. However, the overwhelming majority of the global maritime fleet still relies heavily on fossil fuels, leading to substantial greenhouse gas (GHG) emissions. To address these challenges, the International Maritime Organization (IMO) has implemented regulations and initiatives to mitigate CO2 and GHG emissions from shipping. Among these, the use of hydrogen emerges as a promising option for achieving sustainable decarbonization of maritime transportation. This paper investigates grey, blue, and green hydrogen production methods in the context of the shipping industry. Through strength, weakness, opportunity, and threat (SWOT) analysis combined with Analytical Hierarchy Process (AHP) methodology, the strengths, weaknesses, opportunities, and threats associated with each hydrogen type are prioritised and evaluated. The findings reveal nuanced shifts in strategic considerations during transitions between hydrogen types, highlighting the importance of regulatory support and technological advancements in driving the transition towards cleaner hydrogen production methods. The study concludes by emphasizing the need for strategic planning and technological advances to overcome challenges and capitalize on opportunities for a more sustainable and resilient energy future in maritime transportation.

Kaynakça

  • Ajanovic, A., Sayer, M., Haas, R. (2022). The economics and the environmental benignity of different colors of hydrogen. International Journal of Hydrogen Energy, 47(57), 24136-24154.
  • Alabool, H. M. (2023). ChatGPT in Education: SWOT analysis approach. Paper presented at the 2023 International Conference on Information Technology (ICIT).
  • Arcos, J. M. M., Santos, D. M. (2023). The hydrogen color spectrum: techno-economic analysis of the available technologies for hydrogen production. Gases, 3(1), 25-46.
  • Atilhan, S., Park, S., El-Halwagi, M. M., Atilhan, M., Moore, M., Nielsen, R. B. (2021). Green hydrogen as an alternative fuel for the shipping industry. Current Opinion in Chemical Engineering, 31, 100668.
  • Balcombe, P., Brierley, J., Lewis, C., Skatvedt, L., Speirs, J., Hawkes, A., Staffell, I. (2019). How to decarbonise international shipping: Options for fuels, technologies and policies. Energy conversion and management, 182, 72-88.
  • Baldi, F., Moret, S., Tammi, K., Maréchal, F. (2020). The role of solid oxide fuel cells in future ship energy systems. Energy, 194, 116811.
  • Benzaghta, M. A., Elwalda, A., Mousa, M. M., Erkan, I., Rahman, M. (2021). SWOT analysis applications: An integrative literature review. Journal of Global Business Insights, 6(1), 54-72.
  • Bolat, P., Kayişoğlu, G., Gunes, E., Kizilay, F., Ozsogut, S. (2020). Weighting key factors for port congestion by AHP method. Journal of ETA maritime science, 8(4). Celik, M. S., Akyar, D. A., Ceylan, B. O. (2024). Navigating environmental sustainability in ship recycling industry: Integrated SWOT-TOWS-ANP approach. Ocean Engineering, 295, 116906. Chang, O. H., Chow, C. W. (1999). The balanced scorecard: A potential tool for supporting change and continuous improvement in accounting education. Issues in Accounting Education, 14(3), 395-412. Chermack, T. J., Kasshanna, B. K. (2007). The use and misuse of SWOT analysis and implications for HRD professionals. Human Resource Development International, 10(4), 383-399.
  • Dehghanimohammadabadi, M., Kabadayi, N. (2020). A two-stage AHP multi-objective simulation optimization approach in healthcare. International Journal of the Analytic Hierarchy Process, 12(1).
  • Depken, J., Dyck, A., Roß, L., Ehlers, S. (2022). Safety considerations of hydrogen application in shipping in comparison to LNG. Energies, 15(9), 3250.
  • Gray, N., McDonagh, S., O'Shea, R., Smyth, B., Murphy, J. D. (2021). Decarbonising ships, planes and trucks: An analysis of suitable low-carbon fuels for the maritime, aviation and haulage sectors. Advances in Applied Energy, 1, 100008.
  • Hoang, A. T., Pandey, A., De Osés, F. J. M., Chen, W.-H., Said, Z., Ng, K. H., . . . Nguyen, X. P. (2023). Technological solutions for boosting hydrogen role in decarbonization strategies and net-zero goals of world shipping: Challenges and perspectives. Renewable and Sustainable Energy Reviews, 188, 113790.
  • IMO. (2018). Initial Greenhouse Gas Strategy.
  • IMO. (2020). The Fourth IMO GHG Study -Reduction of GHG Emissions from Ships
  • IMO. (2021). IMO data collection system. https://www.imo.org/
  • Inal, O. B., Deniz, C. (2018). Fuel cell availability for merchant ships. Paper presented at the 3rd International Symposium on Naval Architecture and Maritime (INT-NAM 2018), stanbul, Turkey.
  • Inal, O. B., Zincir, B., Deniz, C. (2022). Investigation on the decarbonization of shipping: An approach to hydrogen and ammonia. International Journal of Hydrogen Energy, 47(45), 19888-19900.
  • Incer-Valverde, J., Korayem, A., Tsatsaronis, G., Morosuk, T. (2023). “Colors” of hydrogen: Definitions and carbon intensity. Energy conversion and management, 291, 117294.
  • Johnston, C., Khan, M. H. A., Amal, R., Daiyan, R., MacGill, I. (2022). Shipping the sunshine: An open-source model for costing renewable hydrogen transport from Australia. International Journal of Hydrogen Energy, 47(47), 20362-20377.
  • Khan, A. U., Ali, Y. (2020). Analytical hierarchy process (AHP) and analytic network process methods and their applications: a twenty year review from 2000-2019: AHP & ANP techniques and their applications: Twenty years review from 2000 to 2019. International Journal of the Analytic Hierarchy Process, 12(3).
  • Kim, T.-e., Mallam, S. (2020). A Delphi-AHP study on STCW leadership competence in the age of autonomous maritime operations. WMU Journal of Maritime Affairs, 19(2), 163-181.
  • Kostić-Ljubisavljević, A., Samčović, A. (2024). Selection of available GIS software for education of students of telecommunications engineering by AHP methodology. Education and Information Technologies, 29(4), 5001-5015.
  • Lubbe, F., Rongé, J., Bosserez, T., Martens, J. A. (2023). Golden hydrogen. Current Opinion in Green and Sustainable Chemistry, 39, 100732.
  • Mallouppas, G., Yfantis, E. A. (2021). Decarbonization in shipping industry: A review of research, technology development, and innovation proposals. Journal of Marine Science and Engineering, 9(4), 415.
  • Ngene, P., Radeva, T., Slaman, M., Westerwaal, R. J., Schreuders, H., Dam, B. (2014). Seeing hydrogen in colors: low‐cost and highly sensitive eye readable hydrogen detectors. Advanced Functional Materials, 24(16), 2374-2382.
  • Rabia, M. A. B., Bellabdaoui, A. (2023). Collaborative intuitionistic fuzzy-AHP to evaluate simulation-based analytics for freight transport. Expert Systems with Applications, 225, 120116.
  • Rattazzi, D., Rivarolo, M., Massardo, A. F. (2021). An innovative tool for the evaluation and comparison of different fuels and technologies onboard ships. Paper presented at the E3S web of conferences.
  • Rivarolo, M., Rattazzi, D., Lamberti, T., Magistri, L. (2020). Clean energy production by PEM fuel cells on tourist ships: A time-dependent analysis. International Journal of Hydrogen Energy, 45(47), 25747-25757.
  • Saaty, T. L. (1980). The analytic hierarchy process (AHP). The Journal of the Operational Research Society, 41(11), 1073-1076.
  • Sahin, B., Senol, Y. E. (2015). A novel process model for marine accident analysis by using generic fuzzy-AHP algorithm. The Journal of Navigation, 68(1), 162-183.
  • Sahin, B., Senol, Y. E., Bulut, E., Duru, O. (2015). Optimizing technology selection in maritime logistics. Research in Logistics & Production, 5(3), 299-309. Schuler, J., Ardone, A., Fichtner, W. (2023). A review of shipping cost projections for hydrogen-based energy carriers. International Journal of Hydrogen Energy.
  • Sevim, C., Zincir, B. (2022a). Biodiesel and renewable diesel as a drop-in fuel for decarbonized maritime transportation Potential and Challenges of Low Carbon Fuels for Sustainable Transport (pp. 319-345): Springer.
  • Sevim, C., Zincir, B. (2022b). Comparison of Biofuels for Decarbonized Maritime Transportation. Paper presented at the International Symposium on Energy Management and Sustainability.
  • Sevim, C., Zincir, B. (2023). Lifecycle Emissions of Fossil Fuels and Biofuels for Maritime Transportation: A Requirement Analysis Decarbonization of Maritime Transport (pp. 27-44): Springer.
  • Sha, X., Liu, X. (2022). Research on the Construction of Public Policy Evaluation System of New Employment Pattern Development based on AHP. Paper presented at the 2022 2nd International Conference on Business Administration and Data Science (BADS 2022).
  • Sormaz, Ü., Yilmaz, M., Özata, E., Büyükyildirim, C. (2023). Burdur İlinin Gastronomi Turizmi Potansiyelinin Swot Analizi ile Değerlendirilmesi (Evaluation of the Gastronomic Tourism Potential of Burdur Province By Swot Analysis). Journal of Tourism & Gastronomy Studies, 11(2), 1262-1279.
  • Şahin, B., Şenol, Y. E., Ve Kartal, Ş. (2014). SWOT Analysis Of Transportation In The Arctic Region. Paper presented at the LM-SCM 2014 XII. International Logistics And Supply Chain Congress.
  • Şenol, Y., Gökçek, V., Seyhan, A. (2017). SWOT-AHP analysis of autonomous shipping. Paper presented at the 4th International Multidisciplinary Congress of Eurasia Proceedings.
  • Van Hoecke, L., Laffineur, L., Campe, R., Perreault, P., Verbruggen, S. W., Lenaerts, S. (2021). Challenges in the use of hydrogen for maritime applications. Energy & Environmental Science, 14(2), 815-843.
  • Wahab, S. N., Ahmed, N., Ab Talib, M. S. (2023). An overview of the SWOT analysis in India's pharmaceutical supply chain. Arab Gulf Journal of Scientific Research.
  • Yang, M., Chen, J., Zhou, Y. (2020). Comprehensive evaluation model of maritime industrial economic activities based on an AHP and BP neural network. Journal of Coastal Research, 111(SI), 178-182.
  • Zekhnini, K., Cherrafi, A., Bouhaddou, I., Benghabrit, Y. (2021). Analytic hierarchy process (AHP) for supply chain 4.0 risks management. Paper presented at the Artificial Intelligence and Industrial Applications: Smart Operation Management.
  • Zincir, B. (2020). A short review of ammonia as an alternative marine fuel for decarbonised maritime transportation. Proceedings of the ICEESEN2020, Kayseri, Turkey, 19-21.
  • Zincir, B., Shukla, P. C., Agarwal, A. K. (2023). Introduction to Decarbonization of Maritime Transport Decarbonization of Maritime Transport (pp. 3-7): Springer.
Toplam 44 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Deniz Mühendisliği (Diğer)
Bölüm Research Articles
Yazarlar

Ömer Berkehan İnal 0000-0003-1890-203X

Yunus Emre Şenol 0000-0001-7592-7247

Yayımlanma Tarihi 16 Haziran 2024
Gönderilme Tarihi 7 Mayıs 2024
Kabul Tarihi 8 Haziran 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 11 Sayı: 2

Kaynak Göster

APA İnal, Ö. B., & Şenol, Y. E. (2024). SWOT-AHP Analysis of Different Colours of Hydrogen for Decarbonization of Shipping. International Journal of Environment and Geoinformatics, 11(2), 29-37. https://doi.org/10.30897/ijegeo.1480096