Seasonal and regional variations of atmospheric ammonia across the South Korean Peninsula

IF 1.1 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
Taehyun Park, Rahul Singh, Jihee Ban, Kyunghoon Kim, Gyutae Park, Seokwon Kang, Siyoung Choi, Jeongin Song, Dong-Gil Yu, Min-Suk Bae, Junyoung Ahn, Hae-Jin Jung, Yong-Jae Lim, Hyun Woong Kim, Tae Kyung Hwang, Yu Jin Choi, Soo-Young Kim, Hyo Seon Kim, Yu Woon Chang, Hye Jung Shin, Yunsung Lim, Jongtae Lee, Jinsoo Park, Jinsoo Choi, Taehyoung Lee
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引用次数: 0

Abstract

This study aimed to identify the factors causing NH3 emissions in the South Korean Peninsula and West Sea region. To analyze the trends of NH3 and other air pollutants, such as NOx, CO, and NR-PM1, we collected samples from six supersites across the peninsula, a roadside in Seoul, and the West Sea over different sampling periods, ranging from 1 month to 1 year. The highest NH3 concentrations were found at rural areas, ascribed to agricultural activities, particularly NH4NO3 decomposition at high summer temperatures. Areas with low population densities recorded the lowest NH3 concentrations, attributed to the lack of anthropogenic activities. A roadside field experiment confirmed the close link between ambient NH3 and vehicle emissions in urban regions by showing a strong correlation between CO and NOx concentrations and that of NH3. Moreover, we examined oceanic emissions near the eastern coast of South Korea in the West Sea. Long-range transportation studies confirmed that most of the pollutants (NH3, CO, and PM1) were transported by wind from the northeastern region of China. A maritime origin study showed that oceanic emissions and NH4NO3 decomposition in the atmosphere owing to high temperatures were the causing NH3 pollution. These findings provided valuable insights into the emission sources of NH3 in primary air pollutants in South Korea, highlighting the contributions of land-based and oceanic sources. Our study can help inform policymakers and stakeholders for developing effective regional air pollution control strategies.

韩国半岛大气氨的季节和区域变化
本研究旨在确定造成南韩半岛和西海地区 NH3 排放的因素。为了分析 NH3 和其他空气污染物(如氮氧化物、一氧化碳和 NR-PM1)的变化趋势,我们在半岛的 6 个超级站点、首尔的一个路边以及西海收集了不同采样期(1 个月至 1 年)的样本。农村地区的 NH3 浓度最高,这与农业活动有关,尤其是夏季高温下 NH4NO3 的分解。人口密度低的地区记录到的 NH3 浓度最低,这归因于缺乏人为活动。一项路边现场实验证实了城市地区环境中的 NH3 与汽车尾气排放之间的密切联系,显示出 CO 和 NOx 浓度与 NH3 浓度之间的紧密相关性。此外,我们还研究了韩国东海岸西海附近的海洋排放物。长程飘移研究证实,大部分污染物(NH3、CO 和 PM1)都是通过风从中国东北地区飘移过来的。海洋起源研究表明,海洋排放和高温导致的大气中 NH4NO3 分解是造成 NH3 污染的原因。这些研究结果为了解韩国主要空气污染物中 NH3 的排放源提供了宝贵的信息,突出了陆源和海洋源的贡献。我们的研究有助于决策者和利益相关者制定有效的区域空气污染控制策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Asian Journal of Atmospheric Environment
Asian Journal of Atmospheric Environment METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
2.80
自引率
6.70%
发文量
22
审稿时长
21 weeks
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