Developments in the investigation of nitrogen and oxygen stable isotopes in atmospheric nitrate

Shah Saud , Shah Fahad , Shah Hassan
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引用次数: 4

Abstract

Under the influence of human activities and the rapid development of industry and agriculture, atmospheric nitrate (NO3) pollution is becoming increasingly serious and has become an environmental problem worldwide. The stable isotopic composition of atmospheric NO315N, δ18O, and Δ17O) can provide a strong basis for understanding the atmospheric nitrogen cycle to effectively control atmospheric NOx pollution. In this work, the δ15N values associated with different sources of atmospheric NO3, the seasonal variation characteristics of δ15N-NO3, and the main influencing factors are reviewed. The δ18O and Δ17O values of different oxidants in the atmosphere and the spatiotemporal distribution characteristics and possible influencing factors of the δ18O and Δ17O values ​​of atmospheric NO3 are summarised. In addition, key advances in NO3 isotopic analysis technique is reviewed. Based on previous work, it is suggested that more attention should be given to the oxidative formation mechanism of NO3 (spatio-temporal differences in the isotopic compositions of different types of oxidants), the δ15N composition of different NOx sources, and the processes of formation, transport, depositional/chemical loss ofatmospheric NO3 with the help of observation and chemical models.

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大气硝酸盐中氮氧稳定同位素的研究进展
在人类活动和工农业快速发展的影响下,大气中硝态氮(NO−3)污染日益严重,已成为世界性的环境问题。大气NO−3的稳定同位素组成(δ15N、δ18O和Δ17O)可为了解大气氮循环、有效控制大气NOx污染提供有力依据。本文综述了不同来源大气NO - 3的δ15N值、δ15N-NO - 3的季节变化特征及主要影响因素。总结了大气中不同氧化剂的δ18O和Δ17O值以及大气NO−3的δ18O和Δ17O值的时空分布特征和可能的影响因素。此外,对NO−3同位素分析技术的关键进展进行了综述。在前人工作的基础上,建议通过观测和化学模型研究NO−3的氧化形成机制(不同类型氧化剂同位素组成的时空差异)、不同NOx来源的δ15N组成以及大气NO−3的形成、运移、沉积/化学损失过程。
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2.30
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期刊最新文献
Erratum to Green approach to synthesize functional carbon nanoparticles at low temperature [Sustainable Chemistry for Climate Action (2022) 100002] Erratum to Developments in the investigation of nitrogen and oxygen stable isotopes in atmospheric nitrate [Sustainable Chemistry for Climate Action (2022) 100003] Erratum to “Conversion of furfuryl alcohol into alkyl¿levulinates using solid acid catalysts” [Sustainable Chemistry for Climate Action (2022) 100004] Advances and challenges in pretreatment technologies for bioethanol production: A comprehensive review Pretreatment of lignocellulosic biomass waste mixtures using a low-cost ionic liquid
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