GSTDTAP  > 资源环境科学
DOI10.1029/2021WR029771
Organizational principles of hyporheic exchange flow and biogeochemical cycling in river networks across scales
Stefan Krause; Benjamin W. Abbott; Viktor Baranov; Susana Bernal; Phillip Blaen; Thibault Datry; Jennifer Drummond; Jan H. Fleckenstein; Jesus Gomez Velez; David M. Hannah; Julia L. A. Knapp; Marie Kurz; ; rg Lewandowski; Eugè; nia Martí; Clara Mendoza-Lera; Alexander Milner; Aaron Packman; Gilles Pinay; Adam S. Ward; Jay P. Zarnetzke
2022-02-11
发表期刊Water Resources Research
出版年2022
英文摘要

Hyporheic zones increase freshwater ecosystem resilience to hydrological extremes and global environmental change. However, current conceptualisations of hyporheic exchange, residence time distributions, and the associated biogeochemical cycling in streambed sediments do not always accurately explain the hydrological and biogeochemical complexity observed in streams and rivers. Specifically, existing conceptual models insufficiently represent the coupled transport and reactivity along groundwater and surface water flow paths, the role of autochthonous organic matter in streambed biogeochemical functioning, and the feedbacks between surface-subsurface ecological processes, both within and across spatial and temporal scales. While simplified approaches to these issues are justifiable and necessary for transferability, the exclusion of important hyporheic processes from our conceptualizations can lead to erroneous conclusions and inadequate understanding and management of interconnected surface water and groundwater environments. This is particularly true at the landscape scale, where the organisational principles of spatio-temporal dynamics of hyporheic exchange flow and biogeochemical processes remain largely uncharacterized.

This paper seeks to identify the most important drivers and controls of hyporheic exchange flow and biogeochemical cycling based on a comprehensive synthesis of findings from a wide range of river systems. We use these observations to test current paradigms and conceptual models, discussing the interactions of local-to-regional hydrological, geomorphological, and ecological controls of hyporheic zone functioning. This improved conceptualization of the landscape organizational principles of drivers of hyporheic exchange flow and biogeochemical processes from reach to catchment scales will inform future river research directions and watershed management strategies.

This article is protected by copyright. All rights reserved.

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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/346710
专题资源环境科学
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Stefan Krause,Benjamin W. Abbott,Viktor Baranov,et al. Organizational principles of hyporheic exchange flow and biogeochemical cycling in river networks across scales[J]. Water Resources Research,2022.
APA Stefan Krause.,Benjamin W. Abbott.,Viktor Baranov.,Susana Bernal.,Phillip Blaen.,...&Jay P. Zarnetzke.(2022).Organizational principles of hyporheic exchange flow and biogeochemical cycling in river networks across scales.Water Resources Research.
MLA Stefan Krause,et al."Organizational principles of hyporheic exchange flow and biogeochemical cycling in river networks across scales".Water Resources Research (2022).
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