Reaching IMO 2050 GHG Targets Exclusively through Energy efficiency measures

E. Lindstad, Polic Dražen, A. Rialland, Inge Sandaas, T. Stokke
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Abstract

Maritime transport accounts for around 3% of global anthropogenic greenhouse gases (GHG) emissions (Well-to-Wake). GHG emissions must be reduced by at least 50% in absolute values by 2050 to contribute to the ambitions of the Paris agreement signed in 2015. Switching to Zero-carbon fuels made from renewable sources (hydro, wind, or solar) is seen by many as the most promising option to deliver the desired GHG reductions. However, renewable energy is a scarce resource that gives a much larger GHG reduction spent within other sectors. This study explores how to reach the IMO 2050 GHG targets exclusively through energy efficiency measures. The results indicate that by combining wind-assisted propulsion (WASP) with a slender hull form, fuel consumption and GHG emissions can be reduced by 30 – 35%, and transport cost by 5 – 10%. In comparison, GHG reductions through Zero-carbon fuels will increase transport costs by 50-200%.
仅通过能效措施实现IMO 2050年温室气体排放目标
海运占全球人为温室气体(GHG)排放量的3%左右。到2050年,温室气体排放的绝对值必须减少至少50%,才能实现2015年签署的《巴黎协定》的目标。许多人认为,改用可再生能源(水电、风能或太阳能)制造的零碳燃料是实现预期温室气体减排的最有希望的选择。然而,可再生能源是一种稀缺资源,在其他部门减少的温室气体排放量要大得多。本研究探讨了如何完全通过能效措施实现IMO 2050年温室气体排放目标。结果表明,通过将风辅助推进(WASP)与细长的船体形式相结合,燃料消耗和温室气体排放可降低30 - 35%,运输成本可降低5 - 10%。相比之下,通过零碳燃料减少温室气体排放将使运输成本增加50-200%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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