Greenland Climate Research Centre (GCRC), Greenland Institute of Natural Resources, Nuuk, Greenland.
Department of Estuarine and Delta Systems, NIOZ Royal Netherlands Institute of Sea Research and Utrecht University, Yerseke, The Netherlands.
Glob Chang Biol. 2017 Dec;23(12):5344-5357. doi: 10.1111/gcb.13801. Epub 2017 Aug 4.
Accelerated mass loss from the Greenland ice sheet leads to glacier retreat and an increasing input of glacial meltwater to the fjords and coastal waters around Greenland. These high latitude ecosystems are highly productive and sustain important fisheries, yet it remains uncertain how they will respond to future changes in the Arctic cryosphere. Here we show that marine-terminating glaciers play a crucial role in sustaining high productivity of the fjord ecosystems. Hydrographic and biogeochemical data from two fjord systems adjacent to the Greenland ice sheet, suggest that marine ecosystem productivity is very differently regulated in fjords influenced by either land-terminating or marine-terminating glaciers. Rising subsurface meltwater plumes originating from marine-terminating glaciers entrain large volumes of ambient deep water to the surface. The resulting upwelling of nutrient-rich deep water sustains a high phytoplankton productivity throughout summer in the fjord with marine-terminating glaciers. In contrast, the fjord with only land-terminating glaciers lack this upwelling mechanism, and is characterized by lower productivity. Data on commercial halibut landings support that coastal regions influenced by large marine-terminating glaciers have substantially higher marine productivity. These results suggest that a switch from marine-terminating to land-terminating glaciers can substantially alter the productivity in the coastal zone around Greenland with potentially large ecological and socio-economic implications.
格陵兰冰原的加速质量损失导致冰川后退,更多的冰川融水注入格陵兰周围的峡湾和沿海水域。这些高纬度生态系统具有很高的生产力,维持着重要的渔业,但未来北极冰冻圈的变化将如何影响它们仍不确定。本文表明,海洋终端冰川在维持峡湾生态系统的高生产力方面发挥着关键作用。来自两个毗邻格陵兰冰盖的峡湾系统的水文和生物地球化学数据表明,受陆地终端冰川或海洋终端冰川影响的峡湾,其海洋生态系统生产力受到的调节非常不同。源于海洋终端冰川的地下融化水羽流将大量周围的深海水带入表面。由此产生的富营养物质深层海水上涌,使夏季有海洋终端冰川的峡湾的浮游植物生产力保持在较高水平。相比之下,只有陆地终端冰川的峡湾缺乏这种上升机制,其生产力较低。商业比目鱼捕捞量的数据表明,受大型海洋终端冰川影响的沿海地区的海洋生产力要高得多。这些结果表明,从海洋终端冰川到陆地终端冰川的转变可以极大地改变格陵兰周围沿海地区的生产力,这可能会产生重大的生态和社会经济影响。