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Effects of sediment geochemical properties on heavy metal bioavailability

Environment International · 2014 · Vol. 73 · pp. 270–281
Chang ZhangZhigang YuGuangming ZengMin JiangZhongzhu YangFang CuiMeng-ying ZhuLiu-qing ShenLiang Hu

Abstract

As the largest container and resource of metals, sediment has a special role in the fate of metals. Factors influencing bioavailability of heavy metals in sediment have never been comprehensively considered and the sediment properties still fail to understand and even controversial. In this review, the mechanisms of sediment properties such as acid-volatile sulfides (AVS), organic matter, texture (clay, silt or sand) and geology, organism behaviors as well as those influencing the bioavailability of metals were analyzed. Under anoxic condition, AVS mainly reduce the solubility and toxicity of metals, while organic matters, Fe-Mn oxides, clay or silt can stabilize heavy metals in elevated oxidative-reductive potential (ORP). Other factors including the variation of pH, redox potential, aging as well as nutrition and the behavior of benthic organism in sediment also largely alter metals mobility and distribution. These factors are often inter-related, and various toxicity assessment methods used to evaluate the bioavailability of trace metals have been also discussed. Additionally, we expect that some novel synthetic materials like polysulfides, nano-materials, provide the substantial amendments for metals pollution in sediment.

Heavy metals in environmentMine drainage and remediation techniquesGeochemistry and Elemental AnalysisBioavailabilityEnvironmental chemistrySedimentOrganic matterSiltAnoxic watersEnvironmental scienceAquatic ecosystemChemistryBenthic zone

MeSH terms

Environmental PollutantsHydrogen-Ion ConcentrationOxidation-ReductionSulfidesGeologic SedimentsMetals, HeavyHydrology

Funding

  • National Natural Science Foundation of China
Citations
850
FWCI
17.07
field-weighted impact
References
133
Percentile
100%
vs. same field & year
Citations per year
References
Trace metal behaviour in estuarine and riverine floodplain soils and sediments: A review
The Science of The Total Environment · 2008 · 1,124 citations
Trace metal bioaccumulation: Models, metabolic availability and toxicity
Environment International · 2006 · 694 citations
The remediation of heavy metals contaminated sediment
Journal of Hazardous Materials · 2008 · 859 citations
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