| Literature DB >> 31637124 |
Ling Cong1, Jiexiu Zhai1, Guoxin Yan1, Jiakai Liu1, Yanan Wu1, Yu Wang1, Zhenming Zhang1, Mingxiang Zhang1.
Abstract
With the rapid development of industry, studies on lead pollution in total suspended particulate matter (TSP) have received extensive attention. This paper analyzed the concentration and pollution sources of lead in the Cuihu Wetland in Beijing during the period of 2016-2017. The results show that the lead contents in TSP in the Cuihu Wetland were approximately equal in summer and spring, greater in winter, and greatest in autumn. The corresponding lead concentrations were 0.052, 0.053, 0.101, and 0.115 ng/m3, respectively. We compared the 206Pb/207Pb data with other materials to further understand the potential sources of atmospheric lead. The mean values of 206Pb/207Pb from spring to winter were 1.082, 1.098, 1.092, and 1.078, respectively. We found that the lead sources may be associated with coal burning, brake and tire wear, and vehicle exhaust emissions. We also calculated the enrichment factor values for the four seasons, and the values were all much greater than 10, indicating that the lead pollution is closely related to human activities.Entities:
Keywords: Artificial wetland; EF values; Lead concentration; Lead isotope ratio; Total suspended particulate matter
Year: 2019 PMID: 31637124 PMCID: PMC6800525 DOI: 10.7717/peerj.7851
Source DB: PubMed Journal: PeerJ ISSN: 2167-8359 Impact factor: 2.984
Figure 1Position of the sampling site.
Figure 2Seasonal variations in TSP (±SE) expressed in ng/m3 during the study period.
Figure 3Seasonal variations in the lead concentrations (±SE) expressed in ng/m3 during the study period.
Lead isotope compositions.
| Spring | Summer | Autumn | Winter | ||
|---|---|---|---|---|---|
| 208Pb/204Pb | Mean | 36.773 | 37.033 | 36.795 | 36.596 |
| Range | 36.710–36.888 | 36.471–37.949 | 36.145–37.559 | 36.233–37.166 | |
| 208Pb/206Pb | Mean | 2.184 | 2.162 | 2.171 | 2.189 |
| Range | 2.165–2.204 | 2.094–2.197 | 2.112–2.206 | 2.160–2.202 | |
| 207Pb/204Pb | Mean | 15.568 | 15.600 | 15.529 | 15.517 |
| Range | 15.443–15.688 | 15.429–15.761 | 15.129–15.732 | 15.350–15.773 | |
| 206Pb/204Pb | Mean | 16.838 | 17.134 | 16.957 | 16.720 |
| Range | 16.678–16.971 | 16.758–18.121 | 16.490–17.787 | 16.505–17.034 | |
| 206Pb/207Pb | Mean | 1.082 | 1.098 | 1.092 | 1.078 |
| Range | 1.063–1.098 | 1.069–1.168 | 1.061–1.132 | 1.069–1.100 |
Figure 4Lead enrichment factors during the study period.
Lead concentrations in TSP in the Cuihu Wetland and other sites worldwide.
| City | Size | Pb (ng/m3) | Season | Character | Reference |
|---|---|---|---|---|---|
| Shenyang, China | TSP | 0.115 | 2013–2014 | Farmland | |
| Hailun, China | TSP | 0.037 | 2013–2014 | Farmland | |
| Taichung, Taiwan | TSP | 0.574 | 2002 | Farmland | |
| Tongyu, China | TSP | 0.031 | 2013–2014 | Grassland | |
| Haeng Goo Dong, Korea | TSP | 0.084 | 1991–1995 | Grassland | |
| Taejon, Korea | TSP | 0.260 | 2002 | Industrial | |
| Islamabad | TSP | 0.214 | 2003 | Industrial | |
| Islamabad | TSP | 0.128 | 2004 | Industrial | |
| Quan-xing, Taiwan | TSP | 0.015 | 2010 | Industrial | |
| Chang-hua, Taiwan | TSP | 0.019 | 2010 | Downtown | |
| Taiwan | TSP | 0.180 | 2004 | Downtown | |
| Beijing, China | TSP | 0.690 | 2005 | Residential | |
| He-mei, Taiwan | TSP | 0.016 | 2010 | Residential | |
| Islamabad, Pakistan | TSP | 0.144 | 2004–2005 | Urban area | |
| Chang-Hua, Taiwan | TSP | 0.034 | 2009–2010 | Urban area | |
| Changbai Mountain, China | TSP | 0.018 | 2013–2014 | Forest | |
| Ilha Grande, Brazil | TSP | 0.001 | 2005 | Forest | |
| Bei-shi, Taiwan | TSP | 0.044 | 2010 | Suburban/Coastal | |
| Gao-Mei, Taiwan | TSP | 0.025 | 2009–2010 | Wetland | |
| Gao-mei, Taiwan | TSP | 0.010 | 2010 | Wetland | |
| Beijing, China | TSP | 0.080 | 2016–2017 | Wetland | This study |
Isotope ratios and the elemental content of possible additional lead sources.
| Materials | 206Pb/207Pb | 208Pb/206Pb | Reference |
|---|---|---|---|
| Leaded vehicle exhaust | 1.11 | 2.194 | |
| Unleaded automobile exhaust | 1.131–1.164 | 2.106–2.142 | |
| Coal | 1.153–1.182 | 2.090–2.220 | |
| Metallurgic dust | 1.161–1.185 | 2.054–2.100 | |
| Industrial sources | 1.176 | 2.1 | |
| TSP (Spring) | 1.063–1.098 | 2.165–2.204 | This study |
| TSP (Summer) | 1.069–1.168 | 2.094–2.197 | This study |
| TSP (Autumn) | 1.061–1.132 | 2.112–2.206 | This study |
| TSP (Winter) | 1.069–1.200 | 2.160–2.202 | This study |