首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Comparison of filter smoke number and elemental carbon from thermal optical analysis of marine diesel engine exhaust
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Comparison of filter smoke number and elemental carbon from thermal optical analysis of marine diesel engine exhaust

机译:从柴油发动机排气的热光学分析中滤烟号和元素碳的比较

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摘要

The interest on contribution of shipping to global warming and especially on polar ice melting has increased. The International Maritime Organization is working toward reporting and estimation of black carbon emissions from shipping. The filter smoke number method is discussed as one possible candidate for onboard determination of black carbon/soot concentration of the engine exhaust gas, and it has recently been considered as one of the best candidates for further evaluation in the International Council on Clean Transportation 4th workshop on marine black carbon emission. Proven, standardized technology and small size and simple operation of the filter smoke meter make it a potential choice for actual onboard use. In our study, we evaluated the validity of the filter smoke number method for measuring soot emission by looking at correlations between the filter smoke number and elemental carbon analyzed using thermal optical transmittance analysis. Until now the conversion of the filter smoke number to black carbon /soot emission has been performed with equations derived from high-speed engines operating with distillate fuels. We introduce optimized calculation parameters for filter smoke number to black carbon/soot conversion, which are derived from light and heavy fuel oil measurements. These new parameters can be utilized with improved accuracy for the estimation of the black carbon emission from filter smoke number measurement with marine fuel qualities.
机译:对全球变暖贡献的兴趣,特别是对极性冰融化的贡献增加。国际海事组织正在努力报告和估算海运的黑碳排放。滤料烟号法被讨论为发动机废气的黑碳/烟灰浓度的板载测定的一个可能候选者,并且它最近被认为是国际清洁交通事务委员会进一步评估的最佳候选人之一在海洋黑碳排放。经过验证,标准化的技术和小尺寸,滤光器烟雾表的简单操作使其成为实际船上使用的潜在选择。在我们的研究中,我们评估了通过使用热光透射率分析分析的滤光器烟号和元素碳之间的相关性来测量测量烟灰排放的滤波器数量方法的有效性。直到现在,已经通过从用馏分燃料操作的高速发动机衍生的方程来进行滤光烟号与黑碳/烟灰发射的转换。我们向滤波器数引入优化的计算参数,以黑色碳/烟灰转换,这是来自光和重油测量的烟道/烟灰转换。这些新参数可以利用提高精度来估计与海洋燃料质量的过滤烟号测量的黑碳排放。

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