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Pollution characteristics and source identification of trace metals in riparian soils of Miyun Reservoir, China.
Ecotoxicol Environ Saf. 2017 Oct; 144:321-329.EE

Abstract

The South-to-North Water Diversion Project, one of China's largest water diversion projects, has aroused widespread concerns about its potential ecological impacts, especially the potential release of trace metals from shoreline soils into Miyun Reservoir (MYR). Here, riparian soil samples from three elevations and four types of land use were collected. Soil particle size distributions, contents and chemical fractionations of trace metals and lead (Pb) isotopic compositions were analyzed. Results showed that soil texture was basically similar in four types of land use, being mainly composed of sand, with minor portions of clay and silt, while recreational land contained more abundant chromium (Cr), copper (Cu), zinc (Zn) and cadmium (Cd), suggesting a possible anthropogenic source for this soil pollution. The potential ecological risk assessment revealed considerable contamination of recreational land, with Cd being the predominant contaminant. Chemical fractionations showed that Cu, arsenic (As), Pb and Cd had potential release risks. Additionally, the 206Pb/207Pb and 208Pb/207Pb values of soils were similar to those of coal combustion. By combining principal component analysis (PCA) with Pb isotopic results, coal combustion was identified as the major anthropogenic source of Zn, Cr, Cu, Cd and Pb. Moreover, isotope ratios of Pb fell in the scope of aerosols, indicating that atmospheric deposition may be the primary input pathway of anthropogenic Zn, Cr, Cu, Cd and Pb. Therefore, controlling coal combustion should be a priority to reduce effectively the introduction of additional Zn, Cu, Cd, and Pb to the area in the future.

Authors+Show Affiliations

State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100038, China; State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing 100875, China.State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100038, China. Electronic address: gaosky34@hotmail.com.State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100038, China.Faculty of Engineering, University of Regina, Regina, Saskatchewan, Canada S4S 0A2.State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100038, China.State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing 100875, China.State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing 100875, China.

Pub Type(s)

Journal Article

Language

eng

PubMed ID

28646737

Citation

Han, Lanfang, et al. "Pollution Characteristics and Source Identification of Trace Metals in Riparian Soils of Miyun Reservoir, China." Ecotoxicology and Environmental Safety, vol. 144, 2017, pp. 321-329.
Han L, Gao B, Lu J, et al. Pollution characteristics and source identification of trace metals in riparian soils of Miyun Reservoir, China. Ecotoxicol Environ Saf. 2017;144:321-329.
Han, L., Gao, B., Lu, J., Zhou, Y., Xu, D., Gao, L., & Sun, K. (2017). Pollution characteristics and source identification of trace metals in riparian soils of Miyun Reservoir, China. Ecotoxicology and Environmental Safety, 144, 321-329. https://doi.org/10.1016/j.ecoenv.2017.06.021
Han L, et al. Pollution Characteristics and Source Identification of Trace Metals in Riparian Soils of Miyun Reservoir, China. Ecotoxicol Environ Saf. 2017;144:321-329. PubMed PMID: 28646737.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Pollution characteristics and source identification of trace metals in riparian soils of Miyun Reservoir, China. AU - Han,Lanfang, AU - Gao,Bo, AU - Lu,Jin, AU - Zhou,Yang, AU - Xu,Dongyu, AU - Gao,Li, AU - Sun,Ke, Y1 - 2017/06/22/ PY - 2017/03/13/received PY - 2017/06/04/revised PY - 2017/06/06/accepted PY - 2017/6/25/pubmed PY - 2017/11/14/medline PY - 2017/6/25/entrez KW - Lead isotopic ratios KW - Miyun Reservoir KW - Riparian soils KW - Trace metals SP - 321 EP - 329 JF - Ecotoxicology and environmental safety JO - Ecotoxicol Environ Saf VL - 144 N2 - The South-to-North Water Diversion Project, one of China's largest water diversion projects, has aroused widespread concerns about its potential ecological impacts, especially the potential release of trace metals from shoreline soils into Miyun Reservoir (MYR). Here, riparian soil samples from three elevations and four types of land use were collected. Soil particle size distributions, contents and chemical fractionations of trace metals and lead (Pb) isotopic compositions were analyzed. Results showed that soil texture was basically similar in four types of land use, being mainly composed of sand, with minor portions of clay and silt, while recreational land contained more abundant chromium (Cr), copper (Cu), zinc (Zn) and cadmium (Cd), suggesting a possible anthropogenic source for this soil pollution. The potential ecological risk assessment revealed considerable contamination of recreational land, with Cd being the predominant contaminant. Chemical fractionations showed that Cu, arsenic (As), Pb and Cd had potential release risks. Additionally, the 206Pb/207Pb and 208Pb/207Pb values of soils were similar to those of coal combustion. By combining principal component analysis (PCA) with Pb isotopic results, coal combustion was identified as the major anthropogenic source of Zn, Cr, Cu, Cd and Pb. Moreover, isotope ratios of Pb fell in the scope of aerosols, indicating that atmospheric deposition may be the primary input pathway of anthropogenic Zn, Cr, Cu, Cd and Pb. Therefore, controlling coal combustion should be a priority to reduce effectively the introduction of additional Zn, Cu, Cd, and Pb to the area in the future. SN - 1090-2414 UR - https://www.unboundmedicine.com/medline/citation/28646737/Pollution_characteristics_and_source_identification_of_trace_metals_in_riparian_soils_of_Miyun_Reservoir_China_ L2 - https://linkinghub.elsevier.com/retrieve/pii/S0147-6513(17)30358-5 DB - PRIME DP - Unbound Medicine ER -