Li Li, Ni Jinren, Chang Fang, Yue Yao, Frolova Natalia, Magritsky Dmitry, Borthwick Alistair G L, Ciais Philippe, Wang Yichu, Zheng Chunmiao, Walling Desmond E
Key Laboratory of Water and Sediment Sciences, Ministry of Education, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, China.
Key Laboratory of Water and Sediment Sciences, Ministry of Education, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, China.
Sci Bull (Beijing). 2020 Jan 15;65(1):62-69. doi: 10.1016/j.scib.2019.09.012. Epub 2019 Sep 11.
Water and sediment transport from rivers to oceans is of primary importance in global geochemical cycle. Against the background of global change, this study examines the changes in water and sediment fluxes and their drivers for 4307 large rivers worldwide (basin area ≥1000 km) based on the longest available records. Here we find that 24% of the world's large rivers experienced significant changes in water flux and 40% in sediment flux, most notably declining trends in water and sediment fluxes in Asia's large rivers and an increasing trend in suspended sediment concentrations in the Amazon River. In particular, nine binary patterns of changes in water-sediment fluxes are interpreted in terms of climate change and human impacts. The change of precipitation is found significantly correlated to the change of water flux in 71% of the world's large rivers, while dam operation and irrigation rather control the change of sediment flux in intensively managed catchments. Globally, the annual water flux from rivers to sea of the recent years remained stable compared with the long-time average annual value, while the sediment flux has decreased by 20.8%.
河流中的水沙输送在全球地球化学循环中至关重要。在全球变化的背景下,本研究基于最长可得记录,考察了全球4307条大河(流域面积≥1000平方千米)的水沙通量变化及其驱动因素。我们发现,全球24%的大河经历了显著的水通量变化,40%的大河经历了显著的输沙量变化,最显著的是亚洲大河的水沙通量呈下降趋势,而亚马孙河的悬浮泥沙浓度呈上升趋势。特别是,从气候变化和人类影响的角度解释了水沙通量变化的九种二元模式。研究发现,71%的全球大河中,降水变化与水通量变化显著相关,而在管理密集的流域,大坝运行和灌溉对输沙量变化的控制作用更大。全球范围内,近年来河流入海的年水通量与长期年均值相比保持稳定,而输沙量减少了20.8%。