首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Installation and characteristics of urea-selective catalytic reduction systems for nitrogen oxide reduction in marine diesel engine
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Installation and characteristics of urea-selective catalytic reduction systems for nitrogen oxide reduction in marine diesel engine

机译:尿氧化物发动机氮氧化物减少尿素选择催化还原系统的安装及特征

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摘要

Since 1 January 2016, the International Maritime Organization Tier III regulations concerning nitrogen oxides took effect. International Maritime Organization Tier III targets new ships weighing over 400 ton engaged in international sailing, especially those entering and leaving emission control areas. The number of emission control areas, including sulfur emission control areas, is forecasted to increase in Japanese seas and elsewhere; thus, all new ships intended for international sailing purposes must consider appropriate responses to these regulations. Currently, urea-selective catalytic reduction systems are frequently used to satisfy International Maritime Organization Tier III regulations in marine diesel engines, but these decrease ship engine performance due to increased engine exhaust gas pressure. Thus, following a study by Ryu et al., this research compares engine exhaust gas pressures at different engine loads (25%, 30%, 35%, 40%, 45%, and 50%) with the application of a thinner metal catalyst to a selective catalytic reduction reactor; metal catalyst thickness was reduced by 30% or more from the original sheet thickness of 0.1 t. Furthermore, 40% urea was injected into the exhaust gas line to conduct a comparative analysis of nitrogen oxide reduction. By changing the metal catalyst's sheet thickness, nitrogen oxide was reduced by more than 80%, while the engine exhaust gas pressure was lowered by approximately 13%-28%.
机译:自2016年1月1日起,关于氮氧化物的国际海运组织Tier III法规生效。国际海运组织Tier III针对新的船舶,重量超过400吨,从事国际航行,特别是进入和留下排放控制区域的船舶。在日本海洋和其他地方增加,包括硫排放控制区域,包括硫排放控制区域的排放控制区域的数量;因此,用于国际航行目的的所有新船舶都必须考虑对这些法规的适当答复。目前,尿素选择性催化还原系统经常用于满足船用柴油发动机的国际海事组织Tier III法规,但由于发动机废气压力增加,这些减少船舶发动机性能。因此,在Ryu等人的研究之后,该研究将不同发动机载荷(25%,30%,35%,40%,45%和50%)的发动机废气压力进行了较薄的金属催化剂选择性催化还原反应器;金属催化剂厚度从原始纸张厚度减小30%以上。此外,将40%尿素注入废气管线,以进行氮氧化物还原的比较分析。通过改变金属催化剂的板厚,氮氧化物减小超过80%,而发动机废气压力降低约13%-28%。

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