Benthic Colonization on New Materials for Marine Ecosystem Restoration in Porto Cesareo, Italy

Author:

Bracho-Villavicencio Carolina123,Matthews-Cascon Helena12,García-Durán Marc3,Vélez Xavier3,Lago Nicola4,Busquier Laura3,Rossi Sergio135ORCID

Affiliation:

1. Graduate Program in Tropical Marine Sciences (PPGCMT), Institute of Marine Sciences (LABOMAR), Fortaleza 60165-081, Brazil

2. Laboratory of Marine Invertebrates of Ceará (LIMCe), Biology Department, Science Center, Campus of Pici, Federal University of Ceará, Fortaleza 60440-900, Brazil

3. Underwater Gardens International, C/Paris 207, 08008 Barcelona, Spain

4. CNR-IRBIM, National Research Council-Institute of Marine Biological Resources and Biotechnologies, 71010 Lesina, Italy

5. Department of Biological and Environmental Sciences and Technologies (DiSTeBA), University of Salento, Via Monteroni s/n, 73100 Lecce, Italy

Abstract

Suitable colonization materials are a pursued target in marine restoration programs. Known for making nutrients available while reducing pollutants and the risk of pathogens in terrestrial ecosystems, Biochar and Bioferment materials of organic origin were tested during a two-year experiment. We tested the efficacy of these materials for restoration purposes through experimental concrete tiles treated with Biochar (B) and Bioferment (F) and tiles made of concrete, which were used as controls (Ct) for the colonization of marine organisms in the marine protected area of Porto Cesareo, Southern Italy (20 m depth). Tiles were monitored for photographs from October 2019 to September 2021. Initially, Biochar treatment presented a higher percentage of total benthic cover (81.23 ± 2.76, median ± SE), differing from Bioferment treatment and control tiles (45.65 ± 5.43 and 47.95 ± 3.69, respectively). Significant interaction between treatments and times suggests changes in community structure related to Polychaeta cover increase in Bioferment and control materials from the second monitoring time. Furthermore, the underwater instability of Bioferment on the tiles could explain the similarity with control tiles in marine organisms’ covers. Hence, Biochar is shown to be a material with optimal stability in seawater, demonstrating greater capacity for marine organisms’ colonization in less time compared to the other two materials.

Publisher

MDPI AG

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