Chemical characteristics of aerosol particles (PM2.5) at a site of Horqin Sand-land in northeast Chi
- 期刊名字:环境科学学报(英文版)
- 文件大小:
- 论文作者:SHEN Zhen-xing,CAO Jun-ji,LI X
- 作者单位:Department of Environmental Science and Engineering,SKLLQG,Chinese Academy of Meteorological Sciences,Urban and Environm
- 更新时间:2022-12-26
- 下载次数:次
The objective of this study was to characterize the mass concentration and chemical composition of aerosol particles(PM2.5)collected at Tongliao(Inner Mongolia Autonomous Region, China), a site in Horqin Sand-land in northeast China. During spring 2005,the mass concentration for PM2.5 was (126 ± 71)μg/m3 in average. Five dust storm events were monitored with higher concentration of (255 ± 77)μg/m3 in average than the non dusty days of (106 ±44)μg/m3. Concentrations for 20 elements were obtained by the PIXE method. Mass concentrations of Al, Mg, Si, K, Ca, Ti, Mn, and V, which increased with the PM2.5 concentration, were higher than the pollution elements (S, Cl, Zn, Ar, Se, Br, and Pb). Enrichment factor relative to crust material was also calculated, which showed dust trace elements were mainly from earth upper crust and pollution elements were dominated the anthropogenic aerosols. The Si/Al,Ca/Al, and Fe/Al ratios in PM2.5 samples at Tongliao were 4.07, 0.94, and 0.82, respectively, which were remarkably different with those on other source regions, such as "Western desert source region", "North desert source region" and central Asia source. Air mass back-trajectory analysis identified three kinds of general pathways were associated with the aerosol particle transport to Tongliao, but have the similar elemental ratios, implying that elemental signatures for dust aerosol from Horqin Sand-land were different with other regions.
-
C4烯烃制丙烯催化剂 2022-12-26
-
煤基聚乙醇酸技术进展 2022-12-26
-
生物质能的应用工程 2022-12-26
-
我国甲醇工业现状 2022-12-26
-
JB/T 11699-2013 高处作业吊篮安装、拆卸、使用技术规程 2022-12-26
-
石油化工设备腐蚀与防护参考书十本免费下载,绝版珍藏 2022-12-26
-
四喷嘴水煤浆气化炉工业应用情况简介 2022-12-26
-
Lurgi和ICI低压甲醇合成工艺比较 2022-12-26
-
甲醇制芳烃研究进展 2022-12-26
-
精甲醇及MTO级甲醇精馏工艺技术进展 2022-12-26
