Please use this identifier to cite or link to this item: https://open.uns.ac.rs/handle/123456789/16429
Title: Lindane and hexachlorobenzene sequestration and detoxification in contaminated sediment amended with carbon-rich sorbents
Authors: Grgić Marko 
Maletic Snezana 
Beljin Jelena 
Kragulj Marijana
Roncevic Srdjan
Tubic Aleksandra 
Agbaba Jasmina 
Issue Date: 2019
Journal: Chemosphere
Abstract: © 2019 Sediment represents a sink for toxic and persistent chemicals such as hexachlorobenzene (HCB) and lindane (γ-HCH). This paper investigates the possibility of reducing the risks associated with the presence of these pollutants in sediments by amending the sediment with carbon-rich materials (activated carbon (AC) and humus (HC)) to sequester the contaminants and render them biologically unavailable. The effects of the dose and contact time between the sediment and the carbon-rich amendments on the effectiveness of the detoxification are estimated. Four doses of carbon-rich amendments (0.5–10%) and four equilibration contact times (14–180 days) were investigated. Results have shown that the bioavailable fraction of γ-HCH and HCB decreased significantly in comparison to the unamended sediment. Regarding the AC amendments, almost 100% for both compounds; and for HC amendments around 95% for γ-HCH, and 75% for HCB. Aging caused further reductions in the bioavailable fraction, compared to the untreated sediment. Phytotoxicity tests showed that Zea mays accumulated significantly higher amount of γ-HCH and HCB from unamended sediment, comparing to Cucurbita pepo and Lactuca sativa. Toxicity of HC and AC amended sediment assessed by Vibrio fischeri luminescence inhibition test and by measuring Zea mays germination and biomass yield was significantly reduced in the amended sediment samples. γ-HCH and HCB accumulation in the Zea mays biomass in the unamended sediment were a significantly higher than in the all HC and AC amended sediment. Both sorbents show potential to be used as remediation agents for organically contaminated sediment, but AC exhibited the better performance.
URI: https://open.uns.ac.rs/handle/123456789/16429
ISSN: 0045-6535
DOI: 10.1016/j.chemosphere.2019.01.017
Appears in Collections:PMF Publikacije/Publications

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