北温带水源生物地球化学的季节同步性和多年代际稳定性

IF 3.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Tamara K. Harms, Jim Hood, Mark D. Scheuerell, Irena Creed, John L. Campbell, I. Fernandez, S. N. Higgins, Sherri L. Johnson, James B. Shanley, Stephen Sebestyen, K. L. Webster, H. Yao
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引用次数: 0

摘要

源流化学的时间模式反映了水和元素循环对局地到全球尺度扰动的响应。我们评估了北美北温带22个参考流域的河流化学(铵、钙、溶解有机碳、硝酸盐、总溶解磷和硫酸盐)的多尺度时间模式,每月观测时间长达32年。应用多变量自回归状态空间(MARSS)模型量化了气候变暖、降水季节变化和区域大气沉积减少的多年代际、季节和更短时间间隔的模式。部分集水区溶质浓度的显著长期趋势与大气沉降的恢复(如钙、硝酸盐、硫酸盐)和降水的增加(如溶解的有机碳)相一致。缺乏大多数流域多年代际趋势的证据表明,北温带生态系统具有恢复力,或者气候变化和干扰制度同时发生的细微净效应不会导致定向趋势。溶质浓度的同步季节性振荡发生在许多集水区,反映了北温带共同的气候和生物季节性驱动因素。尽管在季节尺度上集水区之间具有共同的模式,但在多尺度时间模式上,即使是相邻的水源集水区之间也存在统计学差异,这意味着水源集水区的局部属性改变了大气现象和区域扰动传递的信号。为了有效地描述水文和生物地球化学对气候变化和干扰制度的响应,集水区监测项目可以包括多种河流,其贡献区域包括植被、地形和海拔的区域异质性。总的来说,检测长期模式和趋势需要监测多个集水区,其频率要能捕捉到周期性变化(例如,季节性),持续时间要能涵盖感兴趣的扰动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seasonal synchronicity and multi-decadal stability of headwater biogeochemistry in the northern temperate zone

Temporal patterns in chemistry of headwater streams reflect responses of water and elemental cycles to perturbations occurring at local to global scales. We evaluated multi-scale temporal patterns in up to 32 y of monthly observations of stream chemistry (ammonium, calcium, dissolved organic carbon, nitrate, total dissolved phosphorus, and sulfate) in 22 reference catchments within the northern temperate zone of North America. Multivariate autoregressive state-space (MARSS) models were applied to quantify patterns at multi-decadal, seasonal, and shorter intervals during a period that encompassed warming climate, seasonal changes in precipitation, and regional declines in atmospheric deposition. Significant long-term trends in solute concentrations within a subset of the catchments were consistent with recovery from atmospheric deposition (e.g., calcium, nitrate, sulfate) and increased precipitation (e.g., dissolved organic carbon). Lack of evidence for multi-decadal trends in most catchments suggests resilience of northern temperate ecosystems or that subtle net effects of simultaneous changes in climate and disturbance regimes do not result in directional trends. Synchronous seasonal oscillations of solute concentrations occurred across many catchments, reflecting shared climate and biotic drivers of seasonality within the northern temperate zone. Despite shared patterns among catchments at a seasonal scale, multi-scale temporal patterns were statistically distinct among even adjacent headwater catchments, implying that local attributes of headwater catchments modify the signals imparted by atmospheric phenomena and regional disturbances. To effectively characterize hydrologic and biogeochemical responses to changing climate and disturbance regimes, catchment monitoring programs could include multiple streams with contributing areas that encompass regional heterogeneity in vegetation, topography, and elevation. Overall, detection of long-term patterns and trends requires monitoring multiple catchments at a frequency that captures periodic variation (e.g., seasonality) and a duration encompassing the perturbations of interest.

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来源期刊
Biogeochemistry
Biogeochemistry 环境科学-地球科学综合
CiteScore
7.10
自引率
5.00%
发文量
112
审稿时长
3.2 months
期刊介绍: Biogeochemistry publishes original and synthetic papers dealing with biotic controls on the chemistry of the environment, or with the geochemical control of the structure and function of ecosystems. Cycles are considered, either of individual elements or of specific classes of natural or anthropogenic compounds in ecosystems. Particular emphasis is given to coupled interactions of element cycles. The journal spans from the molecular to global scales to elucidate the mechanisms driving patterns in biogeochemical cycles through space and time. Studies on both natural and artificial ecosystems are published when they contribute to a general understanding of biogeochemistry.
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