Natural acidified marine systems: Lessons and predictions

Author:

Hernández J.C.,González-Delgado S.,Aliende-Hernández M.,Alfonso B.,Rufino-Navarro A.,Hernández C.A.

Publisher

Elsevier

Reference121 articles.

1. Ocean acidification drives community shifts towards simplified non-calcified habitats in a subtropical− temperate transition zone;Agostini;Sci. Rep.,2018

2. Agostini, S., Heitzman, J., Iijima, L., Mitushasi, G., Spatafora, D., Wada, S., et al., 2024. Turf algae drives coral bioerosion under high CO2. https://doi.org/10.21203/rs.3.rs-3779657/v1.

3. Greater mitochondrial energy production provides resistance to ocean acidification in “winning” hermatypic corals;Agostini;Front. mar. sci.,2021

4. Geochemistry of two shallow CO2 seeps in Shikine Island (Japan) and their potential for ocean acidification research;Agostini;Reg. Stud. Mar. Sci.,2015

5. Tropical CO2 seeps reveal the impact of ocean acidification on coral reef invertebrate recruitment;Allen;Marine Pollution Bulletin,2016

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