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Limited Carbonate Dissolution by Boring Microflora at Two Volcanically Acidified Temperate Sites: Ischia (Italy, Mediterranean Sea) and Faial (Azores, NE Atlantic Ocean)

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Limited Carbonate Dissolution by Boring Microflora at Two Volcanically Acidified Temperate Sites: Ischia (Italy, Mediterranean Sea) and Faial (Azores, NE Atlantic Ocean)

DOI: 10.1002/2016gb005575

Type: Publication

Year: 2017

Citations: 5

AZORES DEEP-SEA RESEARCH
Publication Open access December 2017

Limited Carbonate Dissolution by Boring Microflora at Two Volcanically Acidified Temperate Sites: Ischia (Italy, Mediterranean Sea) and Faial (Azores, NE Atlantic Ocean)

Global Biogeochemical Cycles

10.1002/2016gb005575
Open DOI
Total authors
5
Involved team members
1
Citations
5
References
65

Citations by year

3 years
2026
1
2022
2
2020
2

Abstract

Abstract In situ effects of ocean acidification on carbonate dissolution by microboring flora, also called biogenic dissolution, have only been studied once in tropical environments. Naturally acidified seawaters due to CO 2 vents offer a perfect setting to study these effects in temperate systems. Three sites were selected at Ischia (Italy, Mediterranean Sea) with one experiencing ambient pH and the two others a mean pH T of 7.2 and 7.5. At Faial (Azores, NE Atlantic), one site with ambient pH and one acidified site with a mean pH T of 7.4 were selected. Experiments were carried out during 1.5 months and 6 months in Azores and Ischia, respectively, to determine the effects of OA on microboring communities in various carbonate substrates. Low pH influenced negatively boring microflora development by limiting their depth of penetration and abundance in substrates. Biogenic dissolution was thus reduced by a factor 3 to 7 depending on sites and substrate types. At sites with ambient pH in Faial, biogenic dissolution contributed up to 23% to the total weight loss, while it contributed less than 1% to the total weight loss of substrates at the acidified sites. Most of the dissolution at these sites was due to chemical dissolution (often Ω ≤ 1). Such conditions maintained microboring communities at a pioneer stage with a limited depth of penetration in substrates. Our results, together with previous findings that showed an increase of biogenic dissolution at pH > 7.7, suggest that there is a pH tipping point below which microborer development and thus carbonate biogenic dissolution is strongly limited.

Authors

1 involved team member
A
A. Tribollet
0000-0003-2385-3682

IRD‐Sorbonne Universités (UPMC Univ, Paris 06)‐CNRS‐MNHN, Laboratoire LOCEAN Paris Cedex France

J
J. S. Grange
0000-0002-7168-752X

IRD‐Sorbonne Universités (UPMC Univ, Paris 06)‐CNRS‐MNHN, Laboratoire LOCEAN Paris Cedex France

H
H. Parra
0000-0001-9464-1201

IMAR‐Institute of Marine Research MARE—Marine and Environmental Sciences Centre Horta Portugal

Record details

Type
article
Language
EN
Volume
32
Issue
1
Pages
78–91
ISSN
0886-6236

Keywords

Carbonate Dissolution Temperate climate Geology Mediterranean climate Environmental chemistry Seawater Mediterranean sea Carbonate minerals Oceanography Dolomite Mineralogy Environmental science Geochemistry Chemistry Ecology Biology Organic chemistry Physical chemistry

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