巴拿马城大气浓度:气候条件和大气恢复过程的影响。

IF 1.4 4区 环境科学与生态学 Q4 CHEMISTRY, INORGANIC & NUCLEAR
Bernardo Fernández, Jimena Juri Ayub, Diego Valladares, Omayra Pérez, Nathalia Tejedor-Flores, Alexander Esquivel-López
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引用次数: 0

摘要

7Be的日均值为2.37±1.47 mBq m-3 (AM±SD),几何均值为1.88 mBq m-3, CV值为62%。主成分分析(PCA)表明,7Be地表空气浓度与气温、风速呈正相关,与降水、月份呈负相关。降雨显著影响7Be含量,掩盖了其他变量对7Be含量的影响。1毫米以下的降水使空气中的7Be减少1.5倍,且降水量的增加效果更大。降雨的持续时间和强度影响剩余的7Be水平,更长的和更少的降雨更有效地清除。当排除降雨的影响时,⁷Be地表空气浓度与气压正相关,与太阳黑子数负相关。此外,观察到60%以上的相对湿度值显著降低了空气中的⁷Be。7Be地表空气浓度具有明显的季节性特征,在干燥和温暖的月份达到峰值。3月份的平均浓度是9月份的3.4倍。这种模式是由显示季节性行为的各种因素造成的。在干旱月份,温度、气压和风速的升高导致7Be含量升高。而在多雨季节,降水和高相对湿度是地面空气中7Be水平降低的关键因素。对于该区域,富铍气团的水平涌入对7Be地面空气浓度的影响大于高层垂直涌入。降雨是7Be地表空气浓度下降的主要原因。降雨后,大气中7Be含量逐渐恢复,呈现饱和曲线,重新加载系数为0.36±0.05 d-1,重新加载时间为2.8±0.2 d。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
7Be atmospheric concentration in Panama City: influence of climatic conditions and atmospheric recovery process.

The daily distribution of 7Be surface air concentration shows a right-skewed pattern, with a mean of 2.37 ± 1.47 mBq m-3 (AM ± SD) and a geometric mean of 1.88 mBq m-3 and a CV of 62 %. Principal componentanalysis (PCA) revealed positive correlations between 7Be surface air concentration with temperature and wind speed and negative with precipitation and month of the year. Rainfall significantly affects 7Be content and masks the impact of other variables on them. Precipitation under 1 mm reduces 7Be in air by 1.5 times, with increasing amounts having a greater effect. Rain duration and intensity impact remaining 7Be levels, with longer and lighter rains more effective at removal. When the influence of the rains is excluded, the ⁷Be surface air concentration correlates positively barometric pressure and negatively with sunspot numbers. Additionally, it is observed that relative humidity values above 60% significantly decrease ⁷Be in the air. A seasonal pattern in 7Be surface air concentration is evident, with peaks during dry and warm months. In March, the mean concentration is 3.4 times higher than in September. This pattern results from various factors showing seasonal behaviour. During dry months, increased temperature, barometric pressure, and wind speed contribute to higher 7Be content. In contrast, during rainy months, precipitation and high relative humidity act as key factors in reducing 7Be levels in surface air. And for this region, the horizontal influx of beryllium-rich air masses plays a larger role in the 7Be surface air concentration than the vertical influx from higher atmospheric layers. Rainfall is the primary cause of the decrease in 7Be surface air concentration. Following rainfall, the atmosphere gradually is restored in 7Be content, following a saturation curve, with reload coefficient of 0.36 ± 0.05 d-1 and a recharge time of 2.8 ± 0.2 d.

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来源期刊
CiteScore
2.80
自引率
7.70%
发文量
21
审稿时长
3.0 months
期刊介绍: Isotopes in Environmental and Health Studies provides a unique platform for stable isotope studies in geological and life sciences, with emphasis on ecology. The international journal publishes original research papers, review articles, short communications, and book reviews relating to the following topics: -variations in natural isotope abundance (isotope ecology, isotope biochemistry, isotope hydrology, isotope geology) -stable isotope tracer techniques to follow the fate of certain substances in soil, water, plants, animals and in the human body -isotope effects and tracer theory linked with mathematical modelling -isotope measurement methods and equipment with respect to environmental and health research -diagnostic stable isotope application in medicine and in health studies -environmental sources of ionizing radiation and its effects on all living matter
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