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Evaluation of cold ironing and speed reduction policies to reduce ship emissions near and at ports

机译:评估冷熨和减速政策以减少港口附近和港口的船舶排放

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摘要

Different port operating policies have the potential to reduce emissions from shipping; however, their efficacy varies for different ports. This article extends existing literature to present a consistent and transferable methodology that examines emissions reduction port policies based on ship-call data. Carbon dioxide (CO2); sulphur dioxide (SO2); nitrogen oxides (NOx); and black carbon (BC) emissions from near-port containership activities are estimated. Two emissions reduction policies are considered for typical container terminals. Participation of all calling vessels with a speed reduction scheme can lead to reductions of 8-20 per cent, 9-40 per cent and 9-17 per cent for CO2, SO2 and NOx, respectively. However, speed reduction policies may increase BC emissions by up to 10 per cent. Provision of Alternative Marine Power (AMP) for all berthing vessels can reduce in-port emissions by 48-70 per cent, 3-60 per cent, 40-60 per cent and 57-70 per cent for CO2, SO2, NOx and BC, respectively. The analysis shows that emissions depend on visiting fleet, berthing durations, baseline operating pattern of calling ships, sulphur reduction policies in force and the emissions intensity of electricity supply. The potential of emissions reduction policies varies considerably across ports making imperative the evaluation and prioritization of such policies based on the unique characteristics of each port and each vessel.
机译:不同的港口运营政策具有减少航运排放的潜力。但是,它们的功效对于不同的端口有所不同。本文扩展了现有文献,提出了一种一致且可转移的方法,该方法可根据船舶呼叫数据检查减排港口政策。二氧化碳(CO2);二氧化硫(SO2);氮氧化物(NOx);估计了近港集装箱船活动的黑碳排放量。对于典型的集装箱码头,考虑了两种减排政策。所有调停船舶的参与都可以通过减速计划将二氧化碳,二氧化硫和氮氧化物的排放量分别减少8-20%,9-40%和9-17%。但是,减速政策可能会使不列颠哥伦比亚省的排放量最多增加10%。为所有停泊船舶提供替代海洋动力(AMP)可以将二氧化碳,二氧化硫,氮氧化物和不列颠哥伦比亚省的港口内排放量减少48-70%,3-60%,40-60%和57-70% , 分别。分析表明,排放量取决于来访船队,停泊时间,呼叫船的基线运行方式,现行的减硫政策以及电力供应的排放强度。各个港口的减排政策潜力差异很大,因此必须根据每个港口和每个船舶的独特特征对此类政策进行评估和优先级划分。

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