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深海雷德菲尔德比值的时间趋势。

Temporal trends in deep ocean Redfield ratios.

作者信息

Pahlow M, Riebesell U

机构信息

Alfred Wegener Institute for Polar and Marine Research, Post Office Box 120161, D-27515 Bremerhaven, Germany.

出版信息

Science. 2000 Feb 4;287(5454):831-3. doi: 10.1126/science.287.5454.831.

Abstract

The Redfield ratio [carbon:nitrogen:phosphorus (C:N:P)] of particle flux to the deep ocean is a key factor in marine biogeochemical cycling. Changes in oceanic carbon sequestration have been linked to variations in the Redfield ratio on geological time scales, but this ratio generally is assumed to be constant with time in the modern ocean. However, deep-water Redfield ratios in the northern hemisphere show evidence for temporal trends over the past five decades. The North Atlantic Ocean exhibits a rising N:P ratio, which may be related to increased deposition of atmospheric nitrous oxides from anthropogenic N emissions. In the North Pacific Ocean, increasing C:N and C:P ratios are accompanied by rising remineralization rates, which suggests intensified export production. Stronger export of carbon in this region may be due to enhanced bioavailability of aeolian iron. These findings imply that the biological part of the marine carbon cycle currently is not in steady state.

摘要

颗粒通量至深海的雷德菲尔德比率[碳:氮:磷(C:N:P)]是海洋生物地球化学循环中的一个关键因素。在地质时间尺度上,海洋碳固存的变化与雷德菲尔德比率的变化有关,但在现代海洋中,该比率通常被认为随时间保持恒定。然而,北半球深水的雷德菲尔德比率显示出过去五十年来存在时间趋势的证据。北大西洋的N:P比率呈上升趋势,这可能与人为氮排放导致的大气氮氧化物沉积增加有关。在北太平洋,C:N和C:P比率的增加伴随着再矿化率的上升,这表明输出生产增强。该区域碳输出增强可能是由于风成铁的生物可利用性提高。这些发现意味着海洋碳循环的生物部分目前并非处于稳定状态。

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