Climate Change & Environment Research Center, Sejong University, Seoul 05006, Korea.
Cooperate Course for Climate Change, Sejong University, Seoul 05006, Korea.
Int J Environ Res Public Health. 2020 May 26;17(11):3758. doi: 10.3390/ijerph17113758.
This study developed the NH emission factor for Liquefied Natural Gas (LNG) power facilities in Korea by analyzing the emission characteristics from two LNG power plants using methods such as uncertainty analysis. Also, comparing the differences in NH emission levels between the developed emission factors, which reflect the characteristics in Korea, and the U.S. Environmental Protection Agency (EPA) values currently applied in Korea. The estimation showed that the NH emission factor for the LNG power plants was 0.0054 ton NH/10Nm, which is approximately nine times less than the EPA NH emission factor of 0.051 ton NH/10Nm for LNG fuels of the industrial energy combustion sector currently applied in national statistics in Korea. The Selective Catalytic Reduction (SCR) emission factor for LNG power plants was 0.0010 ton NH/10Nm, which is considerably lower than the EPA NH emission factor of 0.146 ton NH/10Nm currently applied in national statistics in Korea for the LNG fuels of the industrial process sector. This indicated the need for developing an emission factor that incorporates the unique characteristics in Korea. The uncertainty range of the LNG stack NH emission factor developed in this study was ±10.91% at a 95% confidence level, while that of the SCR NH emission factor was -10% to +20% at a 95% confidence level, indicating a slightly higher uncertainty range than the LNG stack. At present, quantitative analysis of air pollutants is difficult because numerical values of the uncertainty are not available. However, quantitative analysis might be possible using the methods applied in this study to estimate uncertainty.
本研究通过对两家 LNG 发电厂的排放特性进行分析,采用不确定性分析等方法,开发了韩国液化天然气(LNG)发电设施的 NH 排放因子。同时,还比较了反映韩国特点的开发排放因子与目前在韩国国家统计中应用的美国环保署(EPA)值之间的 NH 排放水平差异。估计结果表明,LNG 发电厂的 NH 排放因子为 0.0054 吨 NH/10Nm,约为韩国目前在国家统计中应用的工业能源燃烧部门 LNG 燃料的 EPA NH 排放因子 0.051 吨 NH/10Nm 的九分之一。LNG 发电厂的选择性催化还原(SCR)NH 排放因子为 0.0010 吨 NH/10Nm,远低于韩国目前在国家统计中应用的工业过程部门 LNG 燃料的 EPA NH 排放因子 0.146 吨 NH/10Nm。这表明需要开发一种包含韩国独特特征的排放因子。本研究开发的 LNG 烟囱 NH 排放因子的不确定性范围在 95%置信水平下为±10.91%,而 SCR NH 排放因子的不确定性范围在 95%置信水平下为-10%至+20%,表明不确定性范围略高于 LNG 烟囱。目前,由于不确定性数值不可用,对空气污染物进行定量分析较为困难。然而,使用本研究中应用的方法估计不确定性,可能可以进行定量分析。