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- W4386256900 abstract "<strong class=journal-contentHeaderColor>Abstract.</strong> The abundant literature on ocean acidification is documenting the impact of changes in the carbonate chemistry on marine life from genes to ecosystems. A vast majority of the experimental work was performed by manipulating the concentration of carbon dioxide in seawater under constant alkalinity (TA) to simulate near-future ocean acidification. Understanding the impact of changes in alkalinity on marine species and ecosystem is less understood. In the context of ocean alkalinity enhancement (OAE), it is critical to resolve such impacts, alone or in combination with other key trace elements to be co-released during implementation, to ensure that any field manipulation does not translate into damaging biological effects. As for other environmental drivers, this will require a biological understanding across all the levels of biological organizations from species to ecosystems, over relevant time exposure considering the method of deployment and considering factors such as local adaptation. Such complex questions cannot be resolved using a single approach and a combination of monitoring, modeling, laboratory, natural, and field experiments will be required. This chapter summarizes some key general considerations for experimental design as well as compare strengths and weaknesses of the different approaches. We will also consider best-practices relevant to OAE such as the need to properly monitor and consider the addition of trace elements and by-products as well as the potential interactions with other naturally occurring drivers." @default.
- W4386256900 created "2023-08-30" @default.
- W4386256900 creator A5086532095 @default.
- W4386256900 date "2023-08-29" @default.
- W4386256900 modified "2023-09-27" @default.
- W4386256900 title "Reply on RC1" @default.
- W4386256900 doi "https://doi.org/10.5194/sp-2023-4-ac1" @default.
- W4386256900 hasPublicationYear "2023" @default.
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