Enhanced Hydrologic Connectivity and Solute Dynamics Following Wildfire and Drought in a Contaminated Temperate Peatland Catchment

IF 4.6 1区 地球科学 Q2 ENVIRONMENTAL SCIENCES Water Resources Research Pub Date : 2024-06-27 DOI:10.1029/2023wr036412
Abbey L. Marcotte, Juul Limpens, João Pedro Nunes, Ben C. Howard, Alexander G. Hurley, Kieran Khamis, Stefan Krause, Danny Croghan, Angeliki Kourmouli, Samantha Leader, Tanu Singh, Cathelijne R. Stoof, Sami Ullah, Nicholas Kettridge
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Abstract

Intact peatlands provide hydrological ecosystem services, such as regulating water regimes and immobilizing pollutants within catchments. Climate change impacts including drought and wildfire may impair their functioning, potentially impacting ecosystem service delivery. Here we investigate stream water quality changes following the combined impacts of a summer drought and wildfire in a peat-dominated catchment in the UK during 2018. The study catchment stores legacy pollutants (i.e., metals) due to past industrial activity, thus making it particularly susceptible to pollutant release during wildfires. We quantified changes in water chemistry during five storm events over a 9-month period following the wildfire. Concentration-discharge (C-Q) relationships for nine solutes were analyzed to explore changes in activation and connectivity of solute source zones. Hysteresis and flushing indices of C-Q responses further described solute dynamics during storm events. We found that most nutrient and base cation concentrations in the stream discharge were highest in the immediate post-fire storm events and decreased during subsequent autumn and spring storms. Metal concentrations increased during autumn and spring storms, indicating delayed mobilization from within-peat or distal headwater sources. Our findings suggest that seasonal re-wetting and hydrologic connectivity following disturbance influenced solute source zone activation and transport in the study catchment. Water quality responses associated with wildfire and drought were primarily observed in the months following the wildfire, suggesting mobilization of pollutants peaks shortly after fire. Our results contribute to a critical understanding of the future of water quality risks in temperate peatland catchments subject to disturbances exacerbated by climate change.
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受污染的温带泥炭地集水区野火和干旱后水文连通性和溶质动力学的增强
完整的泥炭地可提供水文生态系统服务,如调节水系和固定集水区内的污染物。包括干旱和野火在内的气候变化影响可能会损害泥炭地的功能,从而对生态系统服务的提供造成潜在影响。在此,我们调查了 2018 年英国以泥炭为主的集水区在夏季干旱和野火共同影响下的溪流水质变化。由于过去的工业活动,研究流域储存了遗留污染物(即金属),因此在野火期间特别容易释放污染物。在野火发生后的 9 个月内,我们对五次暴雨事件中的水化学变化进行了量化。我们分析了九种溶质的浓度-排量(C-Q)关系,以探讨溶质源区的活化和连通性的变化。C-Q 反应的滞后和冲刷指数进一步描述了风暴事件期间的溶质动态。我们发现,在火灾刚结束后的暴风雨事件中,溪流排放物中的大部分营养物质和基本阳离子浓度最高,而在随后的秋季和春季暴风雨中浓度则有所下降。金属浓度在秋季和春季暴雨期间有所上升,这表明来自平原内部或远端源头水的迁移发生了延迟。我们的研究结果表明,扰动后的季节性复湿和水文连通性影响了研究流域的溶质源区活化和迁移。与野火和干旱相关的水质反应主要出现在野火后的几个月内,这表明污染物的迁移在野火后不久达到高峰。我们的研究结果有助于人们深入了解温带泥炭地集水区未来的水质风险,这些集水区受到的干扰因气候变化而加剧。
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来源期刊
Water Resources Research
Water Resources Research 环境科学-湖沼学
CiteScore
8.80
自引率
13.00%
发文量
599
审稿时长
3.5 months
期刊介绍: Water Resources Research (WRR) is an interdisciplinary journal that focuses on hydrology and water resources. It publishes original research in the natural and social sciences of water. It emphasizes the role of water in the Earth system, including physical, chemical, biological, and ecological processes in water resources research and management, including social, policy, and public health implications. It encompasses observational, experimental, theoretical, analytical, numerical, and data-driven approaches that advance the science of water and its management. Submissions are evaluated for their novelty, accuracy, significance, and broader implications of the findings.
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