Human and natural activities regulate organic matter transport in Chinese rivers

环境科学 有机质 有色溶解有机物 化学需氧量 季节性 生态系统 垃圾箱 溶解有机碳 总有机碳 降水 水生生态系统 水文学(农业) 环境化学 营养物 生态学 环境工程 浮游植物 化学 地理 生物 废水 气象学 岩土工程 工程类
作者
Dong Liu,Xintong Jiang,Mengwei Duan,Shujie Yu,Yan Bai
出处
期刊:Water Research [Elsevier BV]
卷期号:245: 120622-120622 被引量:24
标识
DOI:10.1016/j.watres.2023.120622
摘要

Rivers connect terrestrial and aquatic ecosystems and export approximately 55.47 % of the net terrestrial carbon fixation. However, due to unavailable high-frequency monitoring data, litter is known about diurnal variation in riverine carbon transport on a national scale. Based on daily measurements between March 2021 and February 2022 at 1491 stations across China, this study clarified the spatiotemporal variations in riverine organic matter indicated by chemical oxygen demand (COD). Spatially, COD content showed a spatial pattern with high values in the northwest (p < 0.05), and COD flux was determined by water discharge (84.01 %). Human activities explained 73.20 % of the spatial variations in riverine COD content; in particular, agricultural planting significantly elevated riverine COD (r = 0.73, p < 0.01). Seasonally, 95.53 % of stations showed significant seasonal variations in COD contents (p < 0.05); 69.72 % (25.81 %) were identified as Type II (III) typically had the maximum (minimum) COD in summer (autumn). Moreover, except for human activities (41.08 ± 22.94 %), natural factors also contributed 47.41 ± 24.04 % to the seasonal variations. In summer, high temperatures increased COD by promoting algal proliferation at Type II stations; however, heavy precipitation diluted COD contents at Type III stations. In these cases, seasonal measurements were essential for estimating riverine organic matter transport, especially the values measured in spring and winter. This study has significant implications for managing the aquatic environment, estimating riverine organic matter transport, and balancing the global carbon budget.
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