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未来北极条件下的底栖再矿化以及评估变暖沉积物中碳固存变化的可能性。

Benthic remineralization under future Arctic conditions and evaluating the potential for changes in carbon sequestration in warming sediments.

作者信息

Sen Arunima, Molina Eric Jordà, de Freitas Thaise Ricardo, Hess Silvia, Reiss Henning, Bluhm Bodil A, Renaud Paul E

机构信息

Department of Arctic Biology, The University Centre in Svalbard (UNIS), Longyearbyen, Norway.

Faculty of Biosciences and Aquaculture, Nord University, Bodø, Norway.

出版信息

Sci Rep. 2024 Oct 7;14(1):23336. doi: 10.1038/s41598-024-73633-z.

Abstract

Benthic (seafloor) remineralization of organic material determines the fate of carbon in the ocean and its sequestration. Bottom water temperature and labile carbon supply to the seafloor are expected to increase in a warming Arctic and correspondingly, benthic remineralization rates. We provide some of the first experimental data on the response of sediment oxygen demand (SOD), an established proxy for benthic remineralization, to increased temperature and/or food supply across a range of Arctic conditions and regimes. Each factor significantly increased SOD rates (with different degrees of variability); however the largest increases were seen with both factors combined (50% to ten-fold increases), consistently across the four seasons and the spatial gradient covering shelf to deep basin included in our study. This ability of the Arctic benthos to process increased pulses of carbon suggests that increased sedimented carbon under warming conditions is likely to be utilized and processed, not accumulated, impacting carbon storage and decreasing the Arctic's role as a global carbon sink.

摘要

海洋中有机物质的底栖(海底)再矿化决定了海洋中碳的命运及其封存。在北极变暖的情况下,预计底层水温以及向海底提供的不稳定碳会增加,相应地,底栖再矿化速率也会增加。我们提供了一些首批实验数据,这些数据是关于沉积物需氧量(SOD,一种既定的底栖再矿化指标)在一系列北极条件和区域下对温度升高和/或食物供应增加的响应。每个因素都显著提高了SOD速率(具有不同程度的变异性);然而,两个因素共同作用时增幅最大(增加了50%至十倍),在我们研究涵盖的四个季节以及从陆架到深海盆地的空间梯度范围内都是如此。北极底栖生物处理增加的碳脉冲的这种能力表明,变暖条件下增加的沉积碳可能会被利用和处理,而不是积累,这会影响碳储存,并降低北极作为全球碳汇的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d84f/11458818/063195b605e2/41598_2024_73633_Fig1_HTML.jpg

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