TY - JOUR
T1 - Has the low sulfur strategy benefited the maritime supply chain?
AU - Song, Zhuzhu
AU - Qin, Zhongfeng
AU - Liu, Tian Liang
N1 - Publisher Copyright:
© 2024 Elsevier Ltd
PY - 2024/11
Y1 - 2024/11
N2 - Owing to the IMO 2020 low sulfur regulation, shipping carriers have adopted either very low-sulfur fuels or scrubbers, altering their cost structures and competitiveness. This study examines the regulation's impact on low sulfur strategies by building game theory model of two carriers under scenarios with and without the regulation. The results reveal that while the regulation can disadvantage shippers, it potentially benefits carriers and fuel suppliers. However, in low-competition contexts, the carrier without slow steaming might struggle due to the low sulfur requirement, thus minimizing shipper losses. The research aims for an equilibrium low sulfur strategy, uncovering that speed does not always enhance market share or profits. Utilizing scrubbers achieves Pareto efficiency, avoiding the prisoner's dilemma present in other strategies. Furthermore, the optimal equilibrium may enhance maritime supply chain benefits, emphasizing the importance of strategic low sulfur adoption and regulatory compliance for sustainable competitive advantage.
AB - Owing to the IMO 2020 low sulfur regulation, shipping carriers have adopted either very low-sulfur fuels or scrubbers, altering their cost structures and competitiveness. This study examines the regulation's impact on low sulfur strategies by building game theory model of two carriers under scenarios with and without the regulation. The results reveal that while the regulation can disadvantage shippers, it potentially benefits carriers and fuel suppliers. However, in low-competition contexts, the carrier without slow steaming might struggle due to the low sulfur requirement, thus minimizing shipper losses. The research aims for an equilibrium low sulfur strategy, uncovering that speed does not always enhance market share or profits. Utilizing scrubbers achieves Pareto efficiency, avoiding the prisoner's dilemma present in other strategies. Furthermore, the optimal equilibrium may enhance maritime supply chain benefits, emphasizing the importance of strategic low sulfur adoption and regulatory compliance for sustainable competitive advantage.
KW - Emission limitation
KW - Equilibrium analysis
KW - Fuel strategy
KW - Maritime supply chain
KW - Nash game
UR - https://www.scopus.com/pages/publications/85206330126
U2 - 10.1016/j.trd.2024.104448
DO - 10.1016/j.trd.2024.104448
M3 - 文章
AN - SCOPUS:85206330126
SN - 1361-9209
VL - 136
JO - Transportation Research Part D: Transport and Environment
JF - Transportation Research Part D: Transport and Environment
M1 - 104448
ER -