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Being Green on Sulphur: Targets, Measures and Side-Effects

In: Green Transportation Logistics

Author

Listed:
  • Christos A. Kontovas

    (Technical University of Denmark)

  • George Panagakos

    (Technical University of Denmark)

  • Harilaos N. Psaraftis

    (Technical University of Denmark)

  • Eirini Stamatopoulou

    (National Technical University of Athens)

Abstract

Green House Gas (GHG) emissions are not the only emissions of concern to the international transport community. SOx emissions are non-GHG emissions that are caused by the presence of sulphur in the fuel. As the maximum percentage of sulphur in automotive and aviation fuels is strictly regulated in most countries around the world, much of the attention in recent years has focused on maritime transport. The attention mainly stems from the fact that in marine fuels the percentage of sulphur can be very high: it can be as high as 4.5 % in Heavy Fuel Oil (HFO), which is the fuel typically used in all deep-sea trades. Even though the amounts of SOx produced by ships are substantially lower than CO2, SOx emissions are highly undesirable as they cause acid rain and undesirable health effects in humans and animals. To mitigate these adverse environmental effects, the international shipping community has taken substantial policy measures. With the introduction of new limits for the content of sulphur in marine fuels in Northern European and North American sea areas, short-sea companies operating in these areas will face substantial additional cost. As of 1/1/2015, international regulations stipulate, among other things, a 0.1 % limit in the sulphur content of marine fuels, or equivalent measures limiting the percent of SOx emissions to the same amount. As low-sulphur fuel is substantially more expensive than HFO, there is little or no room within these companies current margins to absorb such additional cost, and thus significant price increases must be expected. Unlike its deep-sea counterpart, in short-sea shipping such a freight rate increase may induce shippers to use land-based alternatives (mainly road). A reverse shift of cargo would go against the EU policy to shift traffic from land to sea to reduce congestion, and might ultimately (under certain circumstances) increase the overall level of CO2 emissions along the entire supply chain. The purpose of this chapter is to investigate the potential effect of sulphur regulations on the share of cargo transported by the waterborne mode vis-à-vis land-based alternatives.

Suggested Citation

  • Christos A. Kontovas & George Panagakos & Harilaos N. Psaraftis & Eirini Stamatopoulou, 2016. "Being Green on Sulphur: Targets, Measures and Side-Effects," International Series in Operations Research & Management Science, in: Harilaos N. Psaraftis (ed.), Green Transportation Logistics, edition 127, chapter 0, pages 351-386, Springer.
  • Handle: RePEc:spr:isochp:978-3-319-17175-3_10
    DOI: 10.1007/978-3-319-17175-3_10
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    Citations

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    Cited by:

    1. Roberto Rivas Hermann & Karin Wigger, 2017. "Eco-Innovation Drivers in Value-Creating Networks: A Case Study of Ship Retrofitting Services," Sustainability, MDPI, vol. 9(5), pages 1-27, May.
    2. Gong, Xu & Li, Zhi-Chun, 2022. "Determination of subsidy and emission control coverage under competition and cooperation of China-Europe Railway Express and liner shipping," Transport Policy, Elsevier, vol. 125(C), pages 323-335.
    3. Lian, Feng & He, Yunzhu & Yang, Zhongzhen, 2020. "Competitiveness of the China-Europe Railway Express and liner shipping under the enforced sulfur emission control convention," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 135(C).

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