Literature DB >> 24480666

A magnetic record of heavy metal pollution in the Yangtze River subaqueous delta.

Chenyin Dong1, Weiguo Zhang2, Honglei Ma1, Huan Feng3, Honghua Lu4, Yan Dong5, Lizhong Yu1.   

Abstract

The rapid industrial development in the Yangtze River watershed over the last several decades has drawn great attention with respect to heavy metal pollution to the Yangtze River estuary and nearby coastal areas. In this study, a 236 cm long sediment core was retrieved from the Yangtze River subaqueous delta (122°36' E, 31°00' N) in 2008 and analyzed for magnetic properties and geochemical compositions to investigate heavy metal pollution history. The activity of (137)Cs peaked at depth 140 cm, with a broad plateau between 120 cm and 140 cm, suggesting an average sedimentation rate of 3.11 cm yr(-1) for the upper 140 cm layer. Magnetic susceptibility (χ), saturation isothermal remanent magnetization (SIRM), anhysteretic remanent magnetization (χARM) and heavy metal enrichment factors (EF) all showed an upward increase trend above depth 140 cm, suggesting that increased ferrimagnetic mineral concentration was accompanied by heavy metal enrichment in the sediment. Geochemical and granolumetric analyses showed that sediment sources and particle sizes played minor roles in the variations of magnetic properties. The effect of diagenesis, which can lead to the selective removal of magnetic minerals, was noticeable in the lower part of the core (140-236 cm). Co-variation between magnetic properties (χ, SIRM and χARM) and EF of Cu and Pb suggests that the elevated ferrimagnetic mineral concentration can be used as an indicator of heavy metal pollution in the reconstruction of environmental changes in estuarine and coastal settings.
Copyright © 2014. Published by Elsevier B.V.

Entities:  

Keywords:  Diagenesis; Heavy metal pollution; Magnetic properties; Particle size; Yangtze River subaqueous delta

Mesh:

Substances:

Year:  2014        PMID: 24480666     DOI: 10.1016/j.scitotenv.2014.01.020

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  7 in total

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7.  Trace metals and magnetic particles in PM2.5: Magnetic identification and its implications.

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  7 in total

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