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重印本:自然酸化系统在海洋酸化研究中的重要性:我们学到了什么?

Reprint: The Importance of Natural Acidified Systems in the Study of Ocean Acidification: What Have We Learned?

机构信息

Marine Community Ecology and Climate Change, Departamento de Biología Animal, Edafología y Geología, Facultad de Ciencias (Biología), Universidad de La Laguna, Tenerife, Canary Islands, Spain.

Marine Community Ecology and Climate Change, Departamento de Biología Animal, Edafología y Geología, Facultad de Ciencias (Biología), Universidad de La Laguna, Tenerife, Canary Islands, Spain.

出版信息

Adv Mar Biol. 2024;97:79-121. doi: 10.1016/bs.amb.2024.08.004. Epub 2024 Sep 5.

Abstract

Human activity is generating an excess of atmospheric CO, resulting in what we know as ocean acidification, which produces changes in marine ecosystems. Until recently, most of the research in this area had been done under small-scale, laboratory conditions, using few variables, few species and few life cycle stages. These limitations raise questions about the reproducibility of the environment and about the importance of indirect effects and synergies in the final results of these experiments. One way to address these experimental problems is by conducting studies in situ, in natural areas where expected future pH conditions already occur, such as CO vent systems. In the present work, we compile and discuss the latest research carried out in these natural laboratories, with the objective to summarize their advantages and disadvantages for research to improve these investigations so they can better help us understand how the oceans of the future will change.

摘要

人类活动正在产生过量的大气 CO,导致我们所知道的海洋酸化,这会导致海洋生态系统发生变化。直到最近,该领域的大多数研究都是在小规模的实验室条件下进行的,使用的变量、物种和生命周期阶段都很少。这些局限性引发了关于环境重现性以及这些实验最终结果中间接效应和协同作用重要性的问题。解决这些实验问题的一种方法是在自然区域进行原位研究,这些自然区域已经出现了预期的未来 pH 值条件,例如 CO 喷口系统。在本工作中,我们对这些自然实验室中进行的最新研究进行了汇编和讨论,目的是总结它们的优缺点,以便改进这些研究,从而更好地帮助我们了解未来海洋将如何变化。

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