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An Energy Consumption Approach to Estimate Air Emission Reductions in Container Shipping

机译:一种能耗方法来估算集装箱运输中的空气排放量

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摘要

Container shipping is the largest producer of emissions within the maritime shipping industry. Hence, measures have been designed and implemented to reduce ship emission levels. IMO’s MARPOL Annex VI, with its future plan of applying Tier III requirements, the Energy Efficiency Design Index for new ships, and the Ship Energy Efficiency Management Plan for all ships. To assist policy formulation and follow-up, this study applies an energy consumption approach to estimate container ship emissions. The volumes of sulphur oxide (SOx), nitrous oxide (NOx), particulate matter (PM), and carbon dioxide (CO2) emitted from container ships are estimated using 2018 datasets on container shipping and average vessel speed records generated via AIS. Furthermore, the estimated reductions in SOx, NOx, PM, and CO2 are mapped for 2020. The empirical analysis demonstrates that the energy consumption approach is a valuable method to estimate ongoing emission reductions on a continuous basis and to fill data gaps where needed, as the latest worldwide container shipping emissions records date back to 2015. The presented analysis supports early-stage detection of environmental impacts in container shipping and helps to determine in which areas the greatest potential for emission reductions can be found.
机译:集装箱运输是海运业内最大的排放生产商。因此,已经设计和实施了措施以减少船舶排放水平。 IMO的Marpol Annex VI,其未来的应用程序III要求的计划,新船​​舶的能源效率设计指数以及所有船舶的船舶能效管理计划。为了协助政策制定和随访,本研究适用于估算集装箱船舶排放的能耗方法。在集装箱运输和通过AIS产生的平均血管速度记录上估计从集装箱船发射的硫氧化物(SOX),氧化氮(NOx),颗粒物(NOx),颗粒物(NOx),颗粒物(CO2)和二氧化碳(CO2)估计。此外,SOX,NOx,PM和CO2中的估计减少为2020年。实证分析表明,能量消耗方法是一种有价值的方法,可以连续地估计持续的排放减少,并填补所需的数据间隙,如最新的全球集装箱运输排放记录返回2015年。提出的分析支持在集装箱运输中对环境影响的早期检测,并有助于确定排放减少潜力最大的区域。

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