This contribution discusses current carbonate deposition in the channel between the Ponza and Palmarola islands and along the western coast of Palmarola, focusing on the quantitatife contribution of biogenic carbonate and in particular on the production and accumulation of carbonates by coralline algae. Seventeen out of 150 grab samples have been selected as representative of the main sedimentary features facies of the seafloor between 30 and 100 m of water depth (wd). They were analyzed using XRD and EDTA titration. Thin sections of the same samples were made to identify their biogenic components and to quantify the contribution of calcareous algae to the total sediment. Maximum carbonate production takes place between 40 and 70 m wd, with the percentage of carbonates ranging between 83.1 and 95.7%. of the total. Multidimensional statistical analyses found two different carbonate facies: the coralline algae facies (CA) occupies 38 km 2 between 30 and 70 m wd, and the carbonate matrix facies (CM) covers 24 km 2 between 70 and 100 m wd. An estimate of the current contribution of algal carbonates to seafloor sediments is about 80% in the CA facies and 15% in the CM facies. The accumulation of total carbonate sediments in the uppermost 2 cm interval of the CA facies is calculated to be 20 566 g m -2 and the fraction of coralline carbonate in the superficial 2-cm layer of the CM facies is calculated as 16 452 g m -2. The production rate of the mean 7% live coralline covers ranges between 7.91 and 31.64 g m -2 yr -1. © Publications Scientifiques du Muséum national d'Histoire naturelle, Paris.

Bracchi, V., Basso, D. (2012). The contribution of calcareous algae to the biogenic carbonates of the continental shelf: Pontian Islands, Tyrrhenian Sea, Italy. GEODIVERSITAS, 34(1), 61-76 [10.5252/g2012n1a4].

The contribution of calcareous algae to the biogenic carbonates of the continental shelf: Pontian Islands, Tyrrhenian Sea, Italy

BRACCHI, VALENTINA ALICE
;
BASSO, DANIELA MARIA
Secondo
2012

Abstract

This contribution discusses current carbonate deposition in the channel between the Ponza and Palmarola islands and along the western coast of Palmarola, focusing on the quantitatife contribution of biogenic carbonate and in particular on the production and accumulation of carbonates by coralline algae. Seventeen out of 150 grab samples have been selected as representative of the main sedimentary features facies of the seafloor between 30 and 100 m of water depth (wd). They were analyzed using XRD and EDTA titration. Thin sections of the same samples were made to identify their biogenic components and to quantify the contribution of calcareous algae to the total sediment. Maximum carbonate production takes place between 40 and 70 m wd, with the percentage of carbonates ranging between 83.1 and 95.7%. of the total. Multidimensional statistical analyses found two different carbonate facies: the coralline algae facies (CA) occupies 38 km 2 between 30 and 70 m wd, and the carbonate matrix facies (CM) covers 24 km 2 between 70 and 100 m wd. An estimate of the current contribution of algal carbonates to seafloor sediments is about 80% in the CA facies and 15% in the CM facies. The accumulation of total carbonate sediments in the uppermost 2 cm interval of the CA facies is calculated to be 20 566 g m -2 and the fraction of coralline carbonate in the superficial 2-cm layer of the CM facies is calculated as 16 452 g m -2. The production rate of the mean 7% live coralline covers ranges between 7.91 and 31.64 g m -2 yr -1. © Publications Scientifiques du Muséum national d'Histoire naturelle, Paris.
Articolo in rivista - Articolo scientifico
Calcareous algae; Carbonate accumulation; Carbonate mineralogy; Coralline carbonate production rate; Tyrrhenian Sea; Western Pontian Islands; Geology; Paleontology
English
2012
34
1
61
76
reserved
Bracchi, V., Basso, D. (2012). The contribution of calcareous algae to the biogenic carbonates of the continental shelf: Pontian Islands, Tyrrhenian Sea, Italy. GEODIVERSITAS, 34(1), 61-76 [10.5252/g2012n1a4].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/57408
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