Fabre Clément, Sonke Jeroen E, Tananaev Nikita, Teisserenc Roman
Eawag: Swiss Federal Institute of Aquatic Science and Technology, Dübendorf, Switzerland; Laboratoire Ecologie Fonctionnelle et Environnement, Université de Toulouse, CNRS, INPT, UPS, Avenue de l'Agrobiopole, 31326 Auzeville-Tolosane, France.
Geosciences Environnement Toulouse, CNRS/IRD/CNES/Université Toulouse III, 14 avenue Edouard Belin, 31400 Toulouse, France.
Sci Total Environ. 2024 Dec 1;954:176713. doi: 10.1016/j.scitotenv.2024.176713. Epub 2024 Oct 9.
Climate change affects more than elsewhere the northern circumpolar permafrost region. This zone comprises large rivers flowing mainly to the Arctic Ocean, delivering about 10 % of the global riverine water flux. These pan-Arctic Rivers drive the dynamics of northern organic carbon (OC) and mercury (Hg) cycling. Permafrost degradation may release substantial amounts of OC and Hg, with potential regional and global impacts. In this review, we summarise the main findings in the last three decades about the role of the pan-Arctic Rivers in OC and Hg cycling and the effect of climate change on these dynamics. Total DOC and POC fluxes delivered by the pan-Arctic rivers presently reach 34.4 ± 1.2 TgC·yr and 7.9 ± 0.5 TgC·yr, while the export of Hg reaches 38.9 ± 1.7 Mg·yr. This review highlights future challenges for the scientific community in evaluating spatial and temporal dynamics of the processes involved in OC and Hg cycling in permafrost-affected areas. Permafrost thawing could lead to greater fluxes of OC and Hg with ill-known resulting risks for food chains. Within this context, efforts should be made to study OC effects on Hg methylation. Moreover, assessing the spatial variability of OC and Hg mobilisation and transport within the pan-Arctic watersheds may help understand the future OC and Hg cycling dynamics in the northern circumpolar permafrost region.
气候变化对北极圈北部的永久冻土区影响尤为显著。该区域有众多主要流向北冰洋的大河,其径流量约占全球河川径流总量的10%。这些泛北极河流驱动着北极地区有机碳(OC)和汞(Hg)的循环动态。永久冻土的退化可能会释放大量的有机碳和汞,对区域乃至全球都有潜在影响。在本综述中,我们总结了过去三十年中关于泛北极河流在有机碳和汞循环中的作用以及气候变化对这些动态的影响的主要研究成果。目前,泛北极河流输送的总溶解有机碳(DOC)和颗粒有机碳(POC)通量分别达到34.4±1.2 TgC·yr和7.9±0.5 TgC·yr,而汞的输出量达到38.9±1.7 Mg·yr。本综述强调了科学界在评估受永久冻土影响地区有机碳和汞循环过程的时空动态方面面临的未来挑战。永久冻土融化可能导致有机碳和汞的通量增加,而这对食物链造成的风险尚不清楚。在此背景下,应努力研究有机碳对汞甲基化的影响。此外,评估泛北极流域内有机碳和汞的迁移和运输的空间变异性,可能有助于理解北极圈北部永久冻土区未来的有机碳和汞循环动态。