Activated Carbon Mitigates Mercury and Methylmercury Bioavailability in Contaminated Sediments
Активированный уголь снижает биодоступность ртути и метилртути в загрязнённых донных отложениях
2013-10-25
SCID: 54.1/dh9sgkmw
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Lumbriculus variegatusactivated carboncontaminated sedimentsin situ remediationmethylmercury bioavailability
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Abstract (AI)
There are few available in situ remediation options for Hg contaminated sediments, short of capping. Here we present the first tests of activated carbon and other sorbents as potential in situ amendments for remediation of mercury and methylmercury (MeHg), using a study design that combined 2 L sediment/water microcosms with 14 day bioaccumulation assays. Our key end points were pore water concentrations, and bioaccumulation of total Hg and MeHg by a deposit-feeding oligochaete Lumbriculus variegatus. Four amendments were tested: an activated carbon (AC); CETCO Organoclay MRM (MRM); Thiol-SAMMS (TS), a thiol-functionalized mesoporous silica; and AMBERSEP GT74, an ion-exchange resin. Amendments were tested in four separate microcosm assays using Hg-contaminated sediments from two freshwater and two estuarine sites. AC and TS amendments, added at 2-7% of the dry weight of sediments significantly reduced both MeHg concentrations in pore waters, relative to unamended controls (by 45-95%) and bioaccumulation of MeHg by Lumbriculus (by between 30 and 90%). Both amendments had only small impacts on microcosm surface water, sediment and pore water chemistry, with the exception of significant reductions in pore water dissolved organic matter. The effectiveness of amendments in reducing bioaccumulation was well-correlated with their effectiveness in increasing sediment:water partitioning, especially of MeHg. Sediments with low native sediment:water MeHg partition coefficients were most effectively treated. Thus, in situ sediment sorbent amendments may be able to reduce the risk of biotic Hg and MeHg uptake in contaminated sediments, and subsequent contamination of food webs.
Key Findings
1
Activated carbon and thiol-functionalized mesoporous silica, applied at 2–7% sediment dry weight, reduced pore-water methylmercury by 45–95% across tested sediments.
2
Amendments caused generally small changes in microcosm chemistry, aside from significant reductions in pore-water dissolved organic matter, indicating potential for reducing food-web contamination.
3
The study provides the first tests of activated carbon and other sorbents as potential in situ amendments for mercury-contaminated sediments.
4
These amendments reduced methylmercury bioaccumulation in Lumbriculus variegatus by 30–90% relative to unamended controls.
5
Treatment effectiveness was strongly correlated with increased sediment–water partitioning, particularly for methylmercury; sediments with low native partition coefficients responded best.
Research Object
Hg- and methylmercury-contaminated freshwater and estuarine sediments treated with activated carbon and other sorbent amendments
Research Subject
The effects of in situ sorbent amendments on pore-water Hg and methylmercury bioavailability, sediment–water partitioning, and bioaccumulation by Lumbriculus variegatus
Publication Details
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2013-10-25
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