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北极和亚北极冰川融水中的硅同位素:冰下风化在硅循环中的作用。

Silicon isotopes in Arctic and sub-Arctic glacial meltwaters: the role of subglacial weathering in the silicon cycle.

作者信息

Hatton Jade E, Hendry Katharine R, Hawkings Jonathan R, Wadham Jemma L, Opfergelt Sophie, Kohler Tyler J, Yde Jacob C, Stibal Marek, Žárský Jakub D

机构信息

School of Earth Sciences, University of Bristol, Bristol, UK.

National High Magnetic Field Lab and Earth, Ocean and Atmospheric Sciences, Florida State University, Tallahassee, FL, USA.

出版信息

Proc Math Phys Eng Sci. 2019 Aug;475(2228):20190098. doi: 10.1098/rspa.2019.0098. Epub 2019 Aug 14.

Abstract

Glacial environments play an important role in high-latitude marine nutrient cycling, potentially contributing significant fluxes of silicon (Si) to the polar oceans, either as dissolved silicon (DSi) or as dissolvable amorphous silica (ASi). Silicon is a key nutrient in promoting marine primary productivity, contributing to atmospheric CO removal. We present the current understanding of Si cycling in glacial systems, focusing on the Si isotope (δSi) composition of glacial meltwaters. We combine existing glacial δSi data with new measurements from 20 sub-Arctic glaciers, showing that glacial meltwaters consistently export isotopically light DSi compared with non-glacial rivers (+0.16‰ versus +1.38‰). Glacial δSi composition ranges from -0.05‰ to -0.86‰ but exhibits low seasonal variability. Silicon fluxes and δSi composition from glacial systems are not commonly included in global Si budgets and isotopic mass balance calculations at present. We discuss outstanding questions, including the formation mechanism of ASi and the export of glacial nutrients from fjords. Finally, we provide a contextual framework for the recent advances in our understanding of subglacial Si cycling and highlight critical research avenues for assessing potential future changes in these environments.

摘要

冰川环境在高纬度海洋营养物质循环中发挥着重要作用,有可能以溶解硅(DSi)或可溶解无定形硅(ASi)的形式向极地海洋输送大量的硅(Si)。硅是促进海洋初级生产力的关键营养物质,有助于去除大气中的二氧化碳。我们阐述了目前对冰川系统中硅循环的理解,重点关注冰川融水的硅同位素(δSi)组成。我们将现有的冰川δSi数据与来自20条亚北极冰川的新测量数据相结合,结果表明,与非冰川河流相比,冰川融水持续输出同位素较轻的DSi(分别为+0.16‰和+1.38‰)。冰川δSi组成范围为-0.05‰至-0.86‰,但季节变化较小。目前,全球硅预算和同位素质量平衡计算中通常不包括冰川系统的硅通量和δSi组成。我们讨论了一些悬而未决的问题,包括ASi的形成机制以及峡湾中冰川营养物质的输出。最后,我们为近期在理解冰下硅循环方面取得的进展提供了一个背景框架,并强调了评估这些环境未来潜在变化的关键研究途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a49/6735475/be93227fc484/rspa20190098-g1.jpg

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