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首页> 外文期刊>Environmental Science and Pollution Research >Changes in precipitating snow chemistry with seasonality in the remote Laohugou glacier basin, western Qilian Mountains
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Changes in precipitating snow chemistry with seasonality in the remote Laohugou glacier basin, western Qilian Mountains

机译:祁连山西部偏远洛杉矶冰川盆地季节性地理沉淀雪化学的变化

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Trace elements in the atmosphere could provide information about regional atmospheric pollution. This study presented a whole year of precipitation observation data regarding the concentrations of trace metals (e.g., Cr, Ni, Cu, Mn, Cd, Mo, Pb, Sb, Ti, and Zn), and a TEM-EDX (transmission electron microscope-energy dispersive X-ray spectrometer) analysis from June 2014 to September 2015 at a remote alpine glacier basin in Northwest China, the Laohugou (LHG) basin (4200 m a.s.l.), to determine the regional scale of atmospheric conditions and chemical processing in the free troposphere in the region. The results of the concentrations of trace metals showed that, although the concentrations generally were lower compared with that of surrounding rural areas (and cities), they showed an obviously higher concentration and higher EFs in winter (DJF) and a relatively lower concentration and lower EFs in summer (JJA) and autumn (SON), implying clearly enhanced winter pollution of the regional atmosphere in Northwest China. The TEM observed residue in precipitation that was mainly composed of types of dust, salt-dust, BC-fly ash-soot, and organic particles in precipitation, which also showed remarked seasonal change, showing an especially high ratio of BC-soot-fly ash particles in winter precipitation compared with that of other seasons (while organic particles were higher in the summer), indicating significant increased anthropogenic particles in the winter atmosphere. The source of increased winter anthropogenic pollutants mainly originated from emissions from coal combustion, e.g., the regional winter heating supply for residents and cement factories in urban and rural regions of Northwest China. Moderate Resolution Imaging Spectroradiometer (MODIS) atmospheric optical depth (AOD) also showed a significant influence of regional atmospheric pollutant emissions over the region in winter. In total, this work indicated that the atmospheric environment in western Qilian Mountains also showed enhanced anthropogenic pollution in winter, probably mainly caused by regional fossil fuel combustion.
机译:大气中的微量元素可以提供有关区域大气污染的信息。本研究介绍了关于痕量金属浓度的沉淀观察数据(例如,Cr,Ni,Cu,Mn,Cd,Mo,Pb,Sb,Ti和Zn)和TEM-EDX(透射电子显微镜 - 生物分散X射线光谱仪)分析2014年6月至2015年9月,在中国西北部的遥远的高山冰川盆地,Laohugou(LHG)盆地(4200米ASL),确定大气条件和化学加工的区域规模该地区的免费对流层。痕量金属浓度的结果表明,虽然浓度通常与周围的农村地区(和城市)相比较低,但它们在冬季(DJF)和相对较低的浓度和更低的浓度较高和更高的EF EFS在夏季(JJA)和秋季(儿子),暗示在中国西北部的区域氛围中显然提高了冬季污染。 TEM观察到的沉淀中的残留物主要由灰尘,盐粉,BC飞灰 - 烟灰和沉淀有机颗粒组成,这也表现出令人敬畏的季节变化,显示出特别高的BC-Soot-Fly比率冬季降水中的灰分颗粒与其他季节(夏季有机颗粒较高),表明冬季气氛中的显着增加的人为颗粒。冬季人为污染物增加的来源主要来自煤炭燃烧的排放,例如,中国西北部城乡地区的居民和水泥厂区域冬季供应。适度分辨率成像光谱辐射器(MODIS)大气光学深度(AOD)还对冬季地区区域大气污染物排放产生了显着影响。这项工作总计表示,西祁连山的大气环境也表现出冬季增强的人为污染,可能主要由区域化石燃料燃烧引起。

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