H2O2 TREATMENT OF RECENT CORAL ARAGONITE: OXYGEN AND CARBON ISOTOPIC IMPLICATIONS

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dc.contributor.author Boiseau M.
dc.contributor.author Juillet-Leclerc A.
dc.date.accessioned 2020-12-14T10:49:45Z
dc.date.available 2020-12-14T10:49:45Z
dc.date.issued 1997
dc.identifier https://elibrary.ru/item.asp?id=263310
dc.identifier.citation Chemical Geology, 1997, , 3, 171-180
dc.identifier.issn 0009-2541
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/20761
dc.description.abstract Coral skeletons contain relatively little organic material and inorganically precipitated carbonate cement, although these quantities are enough to bias geochemical measurements. Preliminary treatment is therefore often necessary to remove these materials. Hydrogen peroxide seems to be the most efficient reagent. This strong oxidant destroys organic matter and its acid pH promotes dissolution of carbonate cements that precipitate after the coral skeleton has formed. We tested the isotopic effects (both on 18O16O and 13C12C ratios of such a chemical treatment on coral aragonite. We demonstrate that only one treatment is necessary to eliminate different contents without alteration of coral aragonite and we verified that there is no isotopic exchange between the oxygen atoms from CaCO3 and H2O2. We measured carbon and oxygen isotopic compositions from samples that cover 2.5 years of coral growth and that were split in two ways: untreated and H2O2-treated. The H2O2-treated subsamples reveal a clear seasonal oscillation that is not evident in the untreated isotopic record. Therefore, hydrogen peroxide treatment should be systematically carried out before isotopic analyses in order to perform palaeoclimatic reconstructions.
dc.subject CORALS
dc.subject HYDROGEN PEROXIDE
dc.subject ORGANIC MATTER
dc.subject EARLY DIAGENESIS
dc.subject STABLE ISOTOPES
dc.title H2O2 TREATMENT OF RECENT CORAL ARAGONITE: OXYGEN AND CARBON ISOTOPIC IMPLICATIONS
dc.type Статья


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