生态化学计量学
富营养化
生物地球化学循环
环境科学
生态系统
磷
水质
水生生态系统
氮气
营养物
生态学
环境化学
水文学(农业)
化学
生物
地质学
有机化学
岩土工程
作者
Ji Liu,Yi Wang,Yong Li,Josep Peñuelas,Ying Zhao,Jordi Sardans,Doerthe Tetzlaff,Jian Liu,Ji Liu,Hongzhao Yuan,Yanyan Li,Ji Chen,Jinshui Wu
出处
期刊:Catena
[Elsevier BV]
日期:2023-07-01
卷期号:231: 107357-107357
被引量:85
标识
DOI:10.1016/j.catena.2023.107357
摘要
Whether and how to synchronously regulate stream water nitrogen (N) and phosphorus (P) concentrations and ratios is a major challenge for sustainable aquatic functions. Soil carbon (C):N:P ratios influence soil N and P stocks and biogeochemical processes that elicit subsequent substantial impacts on stream water N and P concentrations and ratios. Therefore, bridging soil and stream water with ecological stoichiometry is one of the most promising technologies for improving stream water quality. Here, we quantified the ecological stoichiometry of soil and stream water relationships across nine catchments. Soil C:P ratio was the main driver of water quality, showing negative correlations with stream water N and P concentrations, and positive correlations with the N:P ratio in P-limited catchments. We revealed that soil C:P ratios higher than 97.8 mol mol−1 are required to achieve the simultaneous regulation of stream water N and P concentrations below the eutrophication threshold and make algal growth P-limited. Furthermore, we found that the relationships between catchment landscape and soil ecological stoichiometry likely provided practical options for regulating soil ecological stoichiometry. Our work highlights that soil ecological stoichiometry can effectively indicate the amount and proportion of soil N and P losses, and can be intervened through rational landscape planning to achieve sustainable aquatic ecosystems in catchments.
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