Matches in SemOpenAlex for { <https://semopenalex.org/work/W2068211032> ?p ?o ?g. }
- W2068211032 endingPage "1116" @default.
- W2068211032 startingPage "1112" @default.
- W2068211032 abstract "The aim of this work is to assess the potential ecotoxicological effects of contaminated sediments treated with mineral additives. The Microtox solid phase test was used to evaluate the effect of mineral additives on the toxicity of sediment suspensions. Four Mediterranean port sediments were studied after dredging and bioremediation: Sample A from navy harbor, sample B from commercial port and samples C and D from pleasure ports. Sediment samples were stabilized with three mineral additives: hematite, zero-valent iron and zeolite. Results show that all studied mineral additives can act as stabilizer agent in highly contaminated sediments (A and C) by decreasing dissolved metal concentrations and sediment toxicity level. On the contrary, for the less contaminated samples (B and D) hematite and zeolite can provoke toxic effect towards Vibrio fischeri since additive particles can favor bacteria retention and decrease bioluminescence emission." @default.
- W2068211032 created "2016-06-24" @default.
- W2068211032 creator A5019885569 @default.
- W2068211032 creator A5037081436 @default.
- W2068211032 creator A5037618252 @default.
- W2068211032 creator A5038859885 @default.
- W2068211032 creator A5086347720 @default.
- W2068211032 date "2012-03-01" @default.
- W2068211032 modified "2023-10-14" @default.
- W2068211032 title "Ex situ remediation of contaminated sediments using mineral additives: Assessment of pollutant bioavailability with the Microtox solid phase test" @default.
- W2068211032 cites W1588652190 @default.
- W2068211032 cites W1971564368 @default.
- W2068211032 cites W1971642494 @default.
- W2068211032 cites W1971918168 @default.
- W2068211032 cites W1973012915 @default.
- W2068211032 cites W1975006245 @default.
- W2068211032 cites W1976154611 @default.
- W2068211032 cites W1980322899 @default.
- W2068211032 cites W1980700527 @default.
- W2068211032 cites W1986746722 @default.
- W2068211032 cites W1995848354 @default.
- W2068211032 cites W2005268599 @default.
- W2068211032 cites W2007288858 @default.
- W2068211032 cites W2012995680 @default.
- W2068211032 cites W2016359938 @default.
- W2068211032 cites W2016367291 @default.
- W2068211032 cites W2020762322 @default.
- W2068211032 cites W2022750318 @default.
- W2068211032 cites W2025262136 @default.
- W2068211032 cites W2025267424 @default.
- W2068211032 cites W2050021494 @default.
- W2068211032 cites W2055019874 @default.
- W2068211032 cites W2063131025 @default.
- W2068211032 cites W2065083503 @default.
- W2068211032 cites W2065840357 @default.
- W2068211032 cites W2066416790 @default.
- W2068211032 cites W2066848165 @default.
- W2068211032 cites W2081548081 @default.
- W2068211032 cites W2088300919 @default.
- W2068211032 cites W2100101212 @default.
- W2068211032 cites W2112954624 @default.
- W2068211032 cites W2151270080 @default.
- W2068211032 cites W2155450838 @default.
- W2068211032 cites W2156866801 @default.
- W2068211032 cites W2164417514 @default.
- W2068211032 cites W2165196723 @default.
- W2068211032 cites W4230402465 @default.
- W2068211032 cites W4236133728 @default.
- W2068211032 doi "https://doi.org/10.1016/j.chemosphere.2011.12.001" @default.
- W2068211032 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22197312" @default.
- W2068211032 hasPublicationYear "2012" @default.
- W2068211032 type Work @default.
- W2068211032 sameAs 2068211032 @default.
- W2068211032 citedByCount "30" @default.
- W2068211032 countsByYear W20682110322012 @default.
- W2068211032 countsByYear W20682110322013 @default.
- W2068211032 countsByYear W20682110322014 @default.
- W2068211032 countsByYear W20682110322015 @default.
- W2068211032 countsByYear W20682110322016 @default.
- W2068211032 countsByYear W20682110322017 @default.
- W2068211032 countsByYear W20682110322018 @default.
- W2068211032 countsByYear W20682110322019 @default.
- W2068211032 countsByYear W20682110322020 @default.
- W2068211032 countsByYear W20682110322021 @default.
- W2068211032 countsByYear W20682110322022 @default.
- W2068211032 countsByYear W20682110322023 @default.
- W2068211032 crossrefType "journal-article" @default.
- W2068211032 hasAuthorship W2068211032A5019885569 @default.
- W2068211032 hasAuthorship W2068211032A5037081436 @default.
- W2068211032 hasAuthorship W2068211032A5037618252 @default.
- W2068211032 hasAuthorship W2068211032A5038859885 @default.
- W2068211032 hasAuthorship W2068211032A5086347720 @default.
- W2068211032 hasConcept C107872376 @default.
- W2068211032 hasConcept C112570922 @default.
- W2068211032 hasConcept C127313418 @default.
- W2068211032 hasConcept C150394285 @default.
- W2068211032 hasConcept C151730666 @default.
- W2068211032 hasConcept C178790620 @default.
- W2068211032 hasConcept C181389837 @default.
- W2068211032 hasConcept C185592680 @default.
- W2068211032 hasConcept C18903297 @default.
- W2068211032 hasConcept C199289684 @default.
- W2068211032 hasConcept C2779131772 @default.
- W2068211032 hasConcept C2816523 @default.
- W2068211032 hasConcept C39432304 @default.
- W2068211032 hasConcept C40472508 @default.
- W2068211032 hasConcept C522964758 @default.
- W2068211032 hasConcept C60644358 @default.
- W2068211032 hasConcept C82685317 @default.
- W2068211032 hasConcept C86803240 @default.
- W2068211032 hasConcept C87717796 @default.
- W2068211032 hasConceptScore W2068211032C107872376 @default.
- W2068211032 hasConceptScore W2068211032C112570922 @default.
- W2068211032 hasConceptScore W2068211032C127313418 @default.
- W2068211032 hasConceptScore W2068211032C150394285 @default.
- W2068211032 hasConceptScore W2068211032C151730666 @default.
- W2068211032 hasConceptScore W2068211032C178790620 @default.
- W2068211032 hasConceptScore W2068211032C181389837 @default.