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CCS 泄漏情景下潜在酸化对浮游动物的影响。

Potential acidification impacts on zooplankton in CCS leakage scenarios.

机构信息

Akvaplan-niva AS, Fram Centre, N-9296 Tromsø, Norway.

出版信息

Mar Pollut Bull. 2013 Aug 30;73(2):495-503. doi: 10.1016/j.marpolbul.2013.03.013. Epub 2013 Apr 28.

Abstract

Carbon capture and storage (CCS) technologies involve localized acidification of significant volumes of seawater, inhabited mainly by planktonic species. Knowledge on potential impacts of these techniques on the survival and physiology of zooplankton, and subsequent consequences for ecosystem health in targeted areas, is scarce. The recent literature has a focus on anthropogenic greenhouse gas emissions into the atmosphere, leading to enhanced absorption of CO2 by the oceans and a lowered seawater pH, termed ocean acidification. These studies explore the effects of changes in seawater chemistry, as predicted by climate models for the end of this century, on marine biota. Early studies have used unrealistically severe CO2/pH values in this context, but are relevant for CCS leakage scenarios. Little studied meso- and bathypelagic species of the deep sea may be especially vulnerable, as well as vertically migrating zooplankton, which require significant residence times at great depths as part of their life cycle.

摘要

碳捕获和封存 (CCS) 技术涉及大量海水的局部酸化,而这些海水主要由浮游生物物种居住。关于这些技术对浮游动物的生存和生理的潜在影响,以及对目标地区生态系统健康的后续影响,相关知识还很匮乏。最近的文献主要集中在人为温室气体排放到大气中,导致海洋吸收更多的二氧化碳和海水 pH 值降低,即海洋酸化。这些研究探讨了根据本世纪末气候模型预测的海水化学变化对海洋生物群的影响。早期的研究在这种情况下使用了不切实际的严重的 CO2/pH 值,但与 CCS 泄漏情景相关。深海中的中上层和深海物种以及垂直洄游的浮游动物可能特别脆弱,因为它们的生命周期需要在深海中停留很长时间。

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