人为输入和降水的年代际变化影响河流碳、氮和磷的输出,并改变生态系统水平的化学计量学

IF 5.4 2区 地球科学 Q1 ENVIRONMENTAL SCIENCES Global Biogeochemical Cycles Pub Date : 2023-08-31 DOI:10.1029/2023GB007820
Stéphanie Shousha, Roxane Maranger, Jean-François Lapierre
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引用次数: 0

摘要

降水和土地利用的变化影响着碳(C)、氮(N)和磷(P)从陆地向接收水域的输出。然而,随着时间的推移,这些驱动因素是如何不同地改变元素输入并影响随后的生态系统化学计量的,人们对此知之甚少。在这里,我们量化了加拿大quamubec北温带河流主流沿线三个地点的碳、氮和磷出口的长期(1979-2020)趋势,这些地点依次排在森林、城市和受农业影响较大的土地利用区。随着时间的推移,河流N和较小程度的C的输出趋于增加,主要的年际变化在很大程度上由降水变化解决。历史上陆地上净人为氮输入(NANI)的增加也解释了河流氮输出的增加,每年约有35%的NANI进入河流。尽管净人为磷输入(NAPI)较高,但随着时间的推移,所有河流站点的磷输出都趋于减少。在森林站点,P的下降更为缓慢,而在下游城市站点,在城市污水中立法去除P后,观察到P的急剧下降。历史生态系统化学计量的变化反映了自然和人为驱动下元素输出的差异,其变化范围在174∶23∶1到547∶76∶1之间。我们的研究表明,在过去的40年里,C、N和P是如何对同一流域的不同驱动因素做出反应的,以及它们的不同河流输出是如何影响生态系统化学计量学的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Decadal Changes in Anthropogenic Inputs and Precipitation Influence Riverine Exports of Carbon, Nitrogen, and Phosphorus, and Alter Ecosystem Level Stoichiometry

Changes in precipitation and land use influence carbon (C), nitrogen (N), and phosphorus (P) exports from land to receiving waters. However, how these drivers differentially alter elemental inputs and impact subsequent ecosystem stoichiometry over time remains poorly understood. Here, we quantified long-term (1979–2020) trends in C, N, and P exports at three sites along the mainstem of a north temperate river in Québec, Canada, that successively drains forested, urban, and more agriculturally impacted land-use areas. Riverine N and to a lesser degree C exports tended to increase over time, with major inter-annual variation largely resolved by changes in precipitation. Historical increases in net anthropogenic N inputs on land (NANI) also explained increases in riverine N exports, with about 35% of NANI reaching the river annually. Despite higher Net anthropogenic P inputs, NAPI, over time, P exports tended to decrease at all riverine sites. This decrease in P at the forested site was more gradual, whereas a precipitous drop was observed at the downstream urban site following legislated P removal in municipal wastewater. Changes in historical ecosystem stoichiometry reflected the differential elemental exports due to natural and anthropogenic drivers and ranged from 174: 23: 1 to 547: 76: 1 over the years. Our work shows how C, N, and P have responded to different drivers in the same catchment over the last four decades, and how their differential riverine exports have influenced ecosystem stoichiometry.

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来源期刊
Global Biogeochemical Cycles
Global Biogeochemical Cycles 环境科学-地球科学综合
CiteScore
8.90
自引率
7.70%
发文量
141
审稿时长
8-16 weeks
期刊介绍: Global Biogeochemical Cycles (GBC) features research on regional to global biogeochemical interactions, as well as more local studies that demonstrate fundamental implications for biogeochemical processing at regional or global scales. Published papers draw on a wide array of methods and knowledge and extend in time from the deep geologic past to recent historical and potential future interactions. This broad scope includes studies that elucidate human activities as interactive components of biogeochemical cycles and physical Earth Systems including climate. Authors are required to make their work accessible to a broad interdisciplinary range of scientists.
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