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各种化石燃料燃烧源热生成 NOx 的氮同位素组成。

Nitrogen Isotope Composition of Thermally Produced NOx from Various Fossil-Fuel Combustion Sources.

机构信息

Department of Earth, Atmospheric, and Planetary Sciences, Purdue University , 550 Stadium Mall Drive, West Lafayette, Indiana 47907, United States.

Department of Chemistry, Purdue University , 560 Oval Drive, West Lafayette, Indiana 47907, United States.

出版信息

Environ Sci Technol. 2015 Oct 6;49(19):11363-71. doi: 10.1021/acs.est.5b02769. Epub 2015 Sep 9.

Abstract

The nitrogen stable isotope composition of NOx (δ(15)N-NOx) may be a useful indicator for NOx source partitioning, which would help constrain NOx source contributions in nitrogen deposition studies. However, there is large uncertainty in the δ(15)N-NOx values for anthropogenic sources other than on-road vehicles and coal-fired energy generating units. To this end, this study presents a broad analysis of δ(15)N-NOx from several fossil-fuel combustion sources that includes: airplanes, gasoline-powered vehicles not equipped with a three-way catalytic converter, lawn equipment, utility vehicles, urban buses, semitrucks, residential gas furnaces, and natural-gas-fired power plants. A relatively large range of δ(15)N-NOx values was measured from -28.1‰ to 8.5‰ for individual exhaust/flue samples that generally tended to be negative due to the kinetic isotope effect associated with thermal NOx production. A negative correlation between NOx concentrations and δ(15)N-NOx for fossil-fuel combustion sources equipped with selective catalytic reducers was observed, suggesting that the catalytic reduction of NOx increases δ(15)N-NOx values relative to the NOx produced through fossil-fuel combustion processes. Combining the δ(15)N-NOx measured in this study with previous published values, a δ(15)N-NOx regional and seasonal isoscape was constructed for the contiguous U.S., which demonstrates seasonal and regional importance of various NOx sources.

摘要

氮氧化物(NOx)中的氮稳定同位素组成(δ(15)N-NOx)可能是一种有用的指标,可用于对 NOx 源进行分区,这有助于在氮沉降研究中限制 NOx 源的贡献。然而,除了道路车辆和燃煤能源发电装置以外,人为源的 δ(15)N-NOx 值存在很大的不确定性。为此,本研究对几种化石燃料燃烧源的 δ(15)N-NOx 进行了广泛的分析,这些源包括:飞机、未配备三元催化转化器的汽油动力车辆、草坪设备、通用车辆、城市巴士、半挂车、住宅燃气炉和天然气发电厂。从单个排气/烟道样品中测量到的 δ(15)N-NOx 值范围相对较大,为-28.1‰至 8.5‰,由于与热 NOx 生成相关的动力学同位素效应,这些值通常为负值。对于配备选择性催化还原装置的化石燃料燃烧源,NOx 浓度与 δ(15)N-NOx 之间存在负相关关系,这表明与化石燃料燃烧过程产生的 NOx 相比,NOx 的催化还原会增加 δ(15)N-NOx 值。将本研究中测量的 δ(15)N-NOx 值与之前发表的值相结合,构建了美国毗邻地区的 δ(15)N-NOx 区域和季节性同位素质谱图,该图展示了各种 NOx 源在季节性和区域性的重要性。

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