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Early life stages of fish under ocean alkalinity enhancement in coastal plankton communities

Academic article
Year of publication
2024
Journal
Biogeosciences
External websites
DOI
Nasjonalt vitenarkiv
Involved from NIVA
Marta Moyano
Contributors
Silvan Urs Goldenberg, Ulf Riebesell, Daniel Brüggemann, Gregor Börner, Michael Sswat, Arild Folkvord, Maria Couret, Synne Spjelkavik, Nicolas Smith Sanchez, Cornelia Jaspers, Marta Moyano Show all

Summary

Ocean alkalinity enhancement (OAE) stands as a promising carbon dioxide removal technology. Yet, this solu- tion to climate change entails shifts in environmental drivers with unknown consequences for marine fish that are critical to ecosystem health and food security. Fish and their sup- porting food webs may be stressed by the novel carbonate chemistry or the nutrients contained in the deployed miner- als. With a mesocosm experiment on natural plankton com- munities, we studied early life stages of fish under alkalin- ity (+600 μmol kg−1) and silicate (+75 μmol L−1) addition. Larvae and young juveniles of temperate coastal species, in- cluding Atlantic herring (Clupea harengus) and cod (Gadus morhua), were exposed to direct physiological and indirect food-web-mediated effects of OAE for 49 d. Neither in the shorter nor in the longer term did we find an impairment of fish growth and survival. Alkalization even led to an in- crease in fish biomass. This resistance to OAE was despite using non-CO2-equilibrated deployment that induces more severe perturbations in carbonate chemistry (1pH = +0.7, pCO2 = 75 μatm) compared to alternative scenarios. Over- all, our community-level study suggests that some fish pop- ulations, including key fisheries’ species, may be resilient to the water chemistry changes under OAE. Whilst these results give cause for optimism regarding the large-scale applica- tion of OAE, other life history stages (embryos) and habitats (open ocean) may prove more vulnerable.