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Environmental trade-offs in nitrogen oxide removal from ship engine exhausts

机译:从船舶发动机废气中去除氮氧化物的环境取舍

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摘要

The emissions of nitrogen oxides (NOx) from ship engines constitute an increasing part of the total global emissions of NOx while the share from land-based sources is decreasing. In the coming years, new regulations will set limits to emissions in specific areas and various technical countermeasures will be developed and implemented. However, when taking technical measures against emissions on a local scale, there is always a risk of inducing an increase in the total environmental impact related to the technology used, owing to increased energy use and emissions in other places. In the present study, an investigation of the difference in environmental impact from passenger transport vessels with and without catalytic NOx emission purification was performed in a life cycle assessment. The production and transport of chemicals used in the catalyst are included in the study. The study shows that the use of selective catalytic reduction (SCR) gives a considerable decrease in the environmental impact compared with using a diesel engine without a catalyst. The transport of urea solution over a 500 km distance makes a very small contribution to the total environmental impact. The global warming potential is the only impact category for which values are increased when including the urea production and transport. When looking at the contribution from urea to the total impact from the SCR process, the increase is less than 10 per cent for most impact categories.
机译:船舶发动机排放的氮氧化物(NO x )占全球NO x 排放总量的一部分,而陆源排放的份额却在减少。在未来几年中,新法规将对特定区域的排放设定限制,并将制定和实施各种技术对策。但是,在当地采取针对排放的技术措施时,由于其他地方的能源使用和排放增加,总是存在导致与所使用技术相关的总环境影响增加的风险。在本研究中,在生命周期评估中,对有和没有催化NO x 排放净化的客运船对环境影响的差异进行了调查。该研究包括催化剂中所用化学药品的生产和运输。研究表明,与不使用催化剂的柴油发动机相比,使用选择性催化还原(SCR)可以大大降低环境影响。尿素溶液在500公里距离内的传输对整个环境的影响很小。当包括尿素生产和运输在内时,全球变暖潜能值是唯一增加价值的影响类别。当查看尿素对SCR过程总影响的贡献时,对于大多数影响类别,增加幅度不到10%。

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