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Exhaust emissions from ships at berth

机译:停泊处船舶排放的废气

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Emission measurements have been carried out on board six ships at berth during normal real-world operation (hotelling, unloading and loading activities). The study included three passenger ferries, one transoceanic container/roto, one transoceanic car/truck carrier, and one chemical tanker. Emissions were measured from 22 auxiliary engines (AEs, medium and high-speed marine diesels) covering seven engine models and ranging in size from 720 to 2675 kW maximum output. The fuels varied from low sulphur gasoils (2.91 cst viscosity) through to residual oils (411 cst viscosity). Both specific emission factors (g kWh(-1)) at a given engine load and total emissions (kg) of nitrogen oxides (NOx), sulphur dioxide, carbon monoxide, hydrocarbons, carbon dioxide, particulate matter (PM) and polyaromatic hydrocarbons during actual harbour stops were determined. In addition, some preliminary measurements to investigate PM size distributions were undertaken. The specific emissions showed significant variations between the different engine models and also within the same engine model on board the same,ship. For example NOx emissions varied between 9.6 and 20.2 g kWh(corr)(-1) between all engines and 14.2-18.6 g kWh(corr)(-1) between engines of the same model and fuel. Other emissions from boiler use and possible main engine warm-up prior to departure were in general expected to be considerably less than those from the AEs. The results obtained for the three passenger ferries demonstrate that empirically derived, emission formulae using dead weight tonnage can prove to be a cost-effective and accurate tool for harbour emission inventories. (C) 2003 Elsevier Ltd. All rights reserved. [References: 31]
机译:在正常的实际操作中(旅馆,卸载和装载活动),已经对六艘停泊的船舶进行了排放测量。该研究包括三艘客运渡轮,一艘越洋集装箱/轮渡,一艘越洋汽车/卡车运输船和一艘化学品船。测量了涵盖7种发动机型号的22台辅助发动机(AE,中速和高速船用柴油机)的排放量,最大输出功率在720至2675 kW之间。燃料从低硫瓦斯油(2.91 cst粘度)到残留油(411 cst粘度)不等。在给定发动机负载下的特定排放因子(g kWh(-1))和氮氧化物(NOx),二氧化硫,一氧化碳,碳氢化合物,二氧化碳,颗粒物(PM)和多芳烃的总排放(kg)确定了实际的港口停靠站。此外,还进行了一些初步测量以调查PM尺寸分布。在不同的发动机型号之间以及在同一船上的相同发动机型号内,特定排放物显示出显着变化。例如,所有型号的发动机之间的NOx排放在9.6至20.2 g kWh(corr)(-1)之间变化,而同一型号的发动机和燃料之间的NOx排放在14.2-18.6 g kWh(corr)(-1)之间变化。通常,锅炉使用和可能在出发前对主机进行预热的其他排放量预计将大大低于自动驾驶汽车的排放量。从这三个客运渡轮获得的结果表明,使用经验量得出的使用自重吨位的排放公式可以证明是一种具有成本效益且准确的港口排放清单工具。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:31]

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