Startseite 2.5 Risks and opportunities for the first green shipping corridor in the Arctic
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2.5 Risks and opportunities for the first green shipping corridor in the Arctic

  • Claudia S. W. Cheng
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Abstract

As Arctic Sea ice melts, the navigability window of the Arctic shipping routes lengthens, potentially halving container ships’ sailing days between Europe and the Pacific. Increased Arctic shipping traffic could exacerbate climate change impacts with global implications and consequences. A green shipping corridor (GSC) in the Arctic could kickstart the transition towards zero-emission shipping in the region, inspiring other regions to follow. This chapter takes Project Neptun Tromsø as a case study to identify the key factors affecting the value chain and examine their interactions. The technological and regulatory prospects for a GSC in the Arctic by 2030 appear promising. However, socio-political factors like the economic and geopolitical impacts of the ongoing Russia–Ukraine war, and uncertainties in the energy governance in Svalbard, could impede project progress. Particularly, the role of ammonia in Longyearbyen’s future energy system is a critical factor.

Abstract

As Arctic Sea ice melts, the navigability window of the Arctic shipping routes lengthens, potentially halving container ships’ sailing days between Europe and the Pacific. Increased Arctic shipping traffic could exacerbate climate change impacts with global implications and consequences. A green shipping corridor (GSC) in the Arctic could kickstart the transition towards zero-emission shipping in the region, inspiring other regions to follow. This chapter takes Project Neptun Tromsø as a case study to identify the key factors affecting the value chain and examine their interactions. The technological and regulatory prospects for a GSC in the Arctic by 2030 appear promising. However, socio-political factors like the economic and geopolitical impacts of the ongoing Russia–Ukraine war, and uncertainties in the energy governance in Svalbard, could impede project progress. Particularly, the role of ammonia in Longyearbyen’s future energy system is a critical factor.

Kapitel in diesem Buch

  1. Frontmatter I
  2. Table of Content V
  3. Book introduction
  4. The oceans of the world – a source of shared development or rivalry for resources? 3
  5. Section 1
  6. The political economy of the ocean 13
  7. 1.1 Two Wars and a Pandemic: Global Shipping Markets in the Early-2020s 15
  8. 1.2 The state of world fisheries and fish farming 31
  9. 1.3 Shaping and framing deep seabed mining in the public interest: legitimacy, procedural justice, and distributive justice 45
  10. 1.4 The place of marine renewable energy in the ocean economy 63
  11. 1.5 Sustainable campus development and coastal ocean conservation in China’s Greater Bay Area: a higher education perspective 77
  12. Section 2
  13. Introduction: sustainability and the marine environment 91
  14. 2.1 A Green-Blue Economy? The case of offshore wind power 95
  15. 2.2 Ocean governance and climate change at the science-policy interface 115
  16. 2.3 Plastic never dies: finding a governance solution to the ubiquitous nature of microplastic pollution 129
  17. 2.4 The regulation of ABMTs under the BBNJ Agreement: potential contributions for the sustainable development of marine renewable energy technologies on the high seas 145
  18. 2.5 Risks and opportunities for the first green shipping corridor in the Arctic 161
  19. 2.6 Arctic shipping routes over the past 20 years 181
  20. Section 3
  21. Introduction: techno-economic development 197
  22. 3.1 Current status and future prospects of alternative fuel for ships 201
  23. 3.2 Decarbonization by wind propulsion for commercial ships 221
  24. 3.3 Wind ships in sustainable global supply chains: A future of Zero Carbon shipping 231
  25. 3.4 Digitalization and automation in the maritime industry: a case of sustainable development? 241
  26. 3.5 Carbon Capture and Storage: new opportunities for maritime clusters? 255
  27. 3.6 The freshwater-saltwater nexus: the ocean as a sustainable source of water? 271
  28. Section 4
  29. Introduction: Maritime infrastructure 287
  30. 4.1 Maritime hydrogen infrastructure and value chains in the decarbonization governance of shipping in Norway 289
  31. 4.2 North Sea grid integration: what’s there and what’s planned? 307
  32. 4.3 Arctic geopolitics and the future of regional infrastructure: the case of subsea cables 325
  33. 4.4 Canals: transport infrastructure and geopolitics 339
  34. 4.5 Between engineering and geopolitics: a study on island building as one kind of temaritime infrastructure 353
  35. 4.6 The ocean and the geopolitics of energy: a question of critical infrastructure? 379
  36. Section 5
  37. Introduction: ocean geopolitics 399
  38. 5.1 The global ocean and great power politics 401
  39. 5.2 Great powers and their naval ambitions: the geopolitical dimension of maritime affairs 415
  40. 5.3 Governing the ocean: technological change as a driver of maritime conflict 429
  41. 5.4 The politics of maritime boundary disputes 447
  42. 5.5 Could the unexploded ordnance hazard hinder the green energy transition − in the context of offshore wind projects? 467
  43. 5.6 The geopolitics of satellite navigation: the jamming and spoofing threat 485
  44. Book conclusions
  45. Cases in, along, across, below, on, and above the sea 501
  46. Subject Index
Heruntergeladen am 30.9.2025 von https://www.degruyterbrill.com/document/doi/10.1515/9783111195544-013/html
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