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中国东北地区典型城市积雪蒸发过程中的氨气释放

NH release during the snow evaporation process in typical cities in Northeast China.

作者信息

Liu Xiaoteng, Jia Hongsheng, Zhao Yunze, Zhang Yachao, Hou Haodong, Xu Yingying

机构信息

Key Laboratory of Songliao Aquatic Environment, Ministry of Education, Jilin Jianzhu University, No.5088 Xincheng Road, Changchun, 130118, Jilin Province, China.

出版信息

Sci Rep. 2025 Jan 2;15(1):201. doi: 10.1038/s41598-024-83991-3.

Abstract

NH is the most important alkaline gas in the atmosphere and functions as a precursor to secondary ammonium salts. Therefore, identifying its sources and quantifying its emissions is imperative. NH represents a principal component of atmospheric particulate pollutants. As particulate matter acts as a condensation nucleus for wet deposition, the NH concentrations in precipitation are typically elevated. During the evaporation process of wet deposition, NH is likely to be re-emitted as a gas (NH). In Northeast China, heavy and frequent snowfall occurs, making it crucial to elucidate the NH release flux and the factors influencing this release during the snow evaporation process in representative cities of this region. This study collected snow samples from five notable snowfall events in Changchun, Jilin Province that occurred from November 2023 to March 2024, to conduct indoor simulated evaporation experiments (among them, the actual phase changes of two snowfall events consisted mainly of evaporation, whereas those of the other three events consisted mainly of sublimation). The results indicated that during the snow evaporation process, the average ratio (R) of NH re-emitted as NH was 39.28 ± 12.07%. The average release flux (F) was 1624.58 ± 2064.5 μg/m, and the average release rate (V) was 361.33 ± 465.31 ng/(m·s). Within the 100-m atmospheric boundary layer, the total NH flux that was released subsequently during the evaporation of all snowfall events in Changchun during the study period was 46.97 mg/m. The average release flux for individual snowfall events was 688.66 μg/m, which constituted approximately 2.44% of the NH concentration documented in the winter atmosphere of Changchun. During the snow evaporation or sublimation process, R was positively correlated with the environmental temperature (P < 0.05) and negatively correlated with both the environmental wind speed and snowfall amount (P < 0.05). Significant variations in R were observed across multiple functional areas, which were ranked in descending order as follows: commercial areas (R = 26.16%), residential areas (R = 22.01%), cultural and educational areas (R = 20.7%), and industrial areas (R = 18.01%). The influence of a snow-melting agent (NaCl) on the conversion rate of NH initially increased but then subsequently decreased as the dose increased. The lowest measured value (R = 22.02%) was 0 mg/L, whereas the peak measured value (R = 30.31%) was attained at a concentration of 200 mg/L. The findings of this research are important for illuminating the cycling process of NH in the atmosphere and for the comprehensive management of air quality.

摘要

氨是大气中最重要的碱性气体,是二次铵盐的前体。因此,识别其来源并量化其排放至关重要。氨是大气颗粒物污染物的主要成分。由于颗粒物作为湿沉降的凝结核,降水中的氨浓度通常会升高。在湿沉降的蒸发过程中,氨很可能以气体形式(氨)重新排放。在中国东北地区,降雪量大且频繁,因此阐明该地区代表性城市雪蒸发过程中的氨释放通量及影响该释放的因素至关重要。本研究采集了吉林省长春市2023年11月至2024年3月期间5次显著降雪事件的雪样,进行室内模拟蒸发实验(其中,两次降雪事件的实际相变主要由蒸发组成,而其他三次事件的实际相变主要由升华组成)。结果表明,在雪蒸发过程中,以氨形式重新排放的氨的平均比例(R)为39.28±12.07%。平均释放通量(F)为1624.58±2064.5μg/m,平均释放速率(V)为361.33±465.31ng/(m·s)。在100米大气边界层内,研究期间长春市所有降雪事件蒸发过程中随后释放的氨总通量为46.97mg/m。单次降雪事件的平均释放通量为688.66μg/m,约占长春市冬季大气中记录的氨浓度的2.44%。在雪蒸发或升华过程中,R与环境温度呈正相关(P<0.05),与环境风速和降雪量呈负相关(P<0.05)。在多个功能区观察到R存在显著差异,从高到低依次为:商业区(R=26.16%)、居民区(R=22.01%)、文化教育区(R=20.7%)和工业区(R=18.01%)。融雪剂(氯化钠)对氨转化率的影响最初随剂量增加而增加,但随后随剂量增加而降低。最低测量值(R=22.02%)为0mg/L,而在浓度为200mg/L时达到峰值测量值(R=30.31%)。本研究结果对于阐明大气中氨的循环过程以及空气质量的综合管理具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/572c/11696510/c297eed6acb1/41598_2024_83991_Fig1_HTML.jpg

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