Heavy metal accumulation reflecting natural sedimentary processes and anthropogenic activities in two contrasting coastal wetland ecosystems, eastern China

被引:39
作者
Gao, Wenhua [1 ,2 ]
Du, Yongfen [1 ,2 ]
Gao, Shu [1 ,2 ]
Ingels, Jeroen [3 ]
Wang, Dandan [1 ,2 ]
机构
[1] Minist Educ, Key Lab Coast & Isl Dev, Nanjing 210023, Jiangsu, Peoples R China
[2] Nanjing Univ, Sch Geog & Oceanog Sci, Nanjing 210023, Jiangsu, Peoples R China
[3] Plymouth Marine Lab, Prospect Pl, Plymouth PL1 3DH, Devon, England
基金
中国国家自然科学基金;
关键词
Anthropogenic activities; Coastal wetland; Contamination assessment; Heavy metal sources; Natural sedimentary process; Spartina alterniflora; ALTERNIFLORA SALT-MARSHES; RIVER INTERTIDAL ZONE; SURFACE SEDIMENTS; DISTRIBUTION PATTERNS; MULTIVARIATE-ANALYSIS; SOURCE APPORTIONMENT; TRACE-METALS; YELLOW SEA; POLLUTION; CONTAMINATION;
D O I
10.1007/s11368-015-1314-0
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Due to the impacts of natural processes and anthropogenic activities, different coastal wetlands are faced with variable patterns of heavy metal contamination. It is important to quantify the contributions of pollutant sources, in order to adopt appropriate protection measures for local ecosystems. The aim of this research was to compare the heavy metal contamination patterns of two contrasting coastal wetlands in eastern China. In addition, the contributions from various metal sources were identified and quantified, and influencing factors, such as the role of the plant Spartina alterniflora, were evaluated. Sediment samples were taken from two coastal wetlands (plain-type tidal flat at the Rudong (RD) wetland vs embayment-type tidal flat at Luoyuan Bay (LY)) to measure the content of Al, Fe, Co, Cr, Cu, Mn, Mo, Ni, Sr, Zn, Pb, Cd, and As. Inductively coupled plasma atomic emission spectrometry, flame atomic absorption spectrometry, and atomic fluorescence spectrometry methods were used for metal detection. Meanwhile, the enrichment factor and geoaccumulation index were applied to assess the pollution level. Principle component analysis and receptor modeling were used to quantify the sources of heavy metals. Marked differences in metal distribution patterns between the two systems were present. Metal contents in LY were higher than those in RD, except for Sr and Mo. The growth status of S. alterniflora influenced metal accumulations in RD, i.e., heavy metals were more easily adsorbed in the sediment in the following sequence: Cu > Cd > Zn > Cr > Al > Pb a parts per thousand yenaEuro parts per thousand Ni a parts per thousand yenaEuro parts per thousand Co > Fe > Sr a parts per thousand yenaEuro parts per thousand Mn > As > Mo as a result of the presence and size of the vegetation. However, this phenomenon was not observed in LY. A higher potential ecological risk was associated with LY, compared with RD, except for Mo. Based on a receptor model output, sedimentary heavy metal contents at RD were jointly influenced by natural sedimentary processes and anthropogenic activities, whereas they were dominated by anthropogenic activities at LY. A combination of geochemical analysis and modeling approaches was used to quantify the different types of natural and anthropogenic contributions to heavy metal contamination, which is useful for pollution assessments. The application of this approach reveals that natural and anthropogenic processes have different influences on the delivery and retention of metals at the two contrasting coastal wetlands. In addition, the presence and size of S. alterniflora can influence the level of metal contamination in sedimentary environments.
引用
收藏
页码:1093 / 1108
页数:16
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