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船舶源尾气排放监测方法综述

Comparative analysis of ship exhaust gas monitoring methods

  • 摘要: 船舶尾气排放是全球环境污染的重要来源,排放监测是船舶污染数据获取的最主要方式之一,监测方法的正确选择可以有效提升船舶排放清单的准确性。本文综合阐述了各种船舶监测方法的差异、适用范围及精度体系的适应性,并对不同方法在量化污染物排放因子(Emission Factor,简称EF)的能力进行了评估。结果表明,不同监测方法间存在显著差异,如使用羽流监测能够捕捉长期排放趋势及区域扩散规律,而使用烟气监测则对瞬时排放异常的敏感性更高。烟气监测适用于高精度源排放研究,而烟羽监测更适用于评估船舶排放区域环境影响。通过对比排放因子数据显示,ISO标准监测平台(ISO-compliant monitoring platform, 简称ICMP)与便携式船载监测平台(The custom-developed portable shipborne monitoring platform ,简称CPMP)获取的数据,均能提供可靠的监测结果,但对于不同大气污染物其监测数据的准确性存在较大差异。ISO标准监测平台适用于船舶排放监测标准化快速筛查,合规性监管和大型远洋船舶排放因子研究。便携式船载监测平台可用于污染贡献评估与排放清单优化,特别适合船载测试难以实施的船舶,实现实际航行工况下的排放特征研究。

     

    Abstract: Ship exhaust emissions are an important source of global environmental pollution, and emission monitoring is one of the primary approaches to obtain ship emission data. The proper selection of monitoring methods can effectively improve the accuracy of ship emission inventories. This paper comprehensively reviews the differences, scope of application and adaptability of the precision system of various ship monitoring methods, and evaluates the ability of different methods in quantifying the pollutant emission factor (EF). The results show that there are significant differences between the different monitoring methods. The use of plume monitoring is able to capture long-term emission trends and regional dispersion patterns, while the use of stack gas monitoring is more sensitive to transient emission anomalies. Stack gas monitoring is suitable for high-precision source emission research, whereas plume monitoring is more appropriate for assessing the regional environmental impacts of ship emissions. Comparison of the EFs showed that the data obtained from both the ISO-compliant monitoring platform (ICMP) and the custom-developed portable shipborne monitoring platform (CPMP) provided reliable monitoring results, but there were significant differences in the accuracy of the monitoring data for different air pollutants. The ICMP is suitable for standardized rapid screening of ship emissions, compliance supervision, and EFs studies of large ocean-going vessels. The CPMP can be applied to pollution contribution evaluation and emission inventory optimization, and is particularly suitable for vessels where on-board testing is difficult to implement, enabling research on emission characteristics under actual navigation conditions.

     

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