西北太平洋森林中的溪流化学反应受水文连通性和火灾严重程度的影响

IF 3.2 3区 地球科学 Q1 Environmental Science Hydrological Processes Pub Date : 2024-07-29 DOI:10.1002/hyp.15231
Sidney A. Bush, Sherri L. Johnson, Kevin D. Bladon, Pamela L. Sullivan
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引用次数: 0

摘要

在美国西北太平洋地区的潮湿森林中,大规模野火正变得越来越常见,预计在未来气候条件下,野火的发生率还会增加。野火会改变溪流对降水的响应,并移动水质成分,从而对水生生态系统和下游饮用水处理构成风险。研究通常集中于严重野火的影响,而对低严重和混合严重野火的溪流生物地球化学响应往往研究不足,特别是在山坡和溪流之间水文连通性的季节性变化期间。我们在 HJ 安德鲁斯实验林研究了 2020 年假日农场火灾的影响,火灾前罕见的溪流排放和化学数据使我们能够评估混合严重性火灾对溪流水量和水质的影响。我们的研究设计侧重于两个经过充分研究的流域,这两个流域的火灾严重程度分别为低度和中低度,我们在这里研究了长期数据(火灾前和火灾后),以及在紧随野火和长期干旱的夏季之后发生的四次降雨事件中收集的瞬时抓取样本。我们分析了这些降雨事件对溪流排水和化学特性的影响,这些降雨事件代表了地下水与溪流的水文连通性从低到高的过渡。长期数据显示,火灾后的年总流量和平均流量基本保持一致,而中低度烧毁流域的基流略有增加。火灾后,溪水中硝酸盐、磷酸盐和硫酸盐的浓度明显增加,浓度差异随火灾严重程度而增加。我们的末端成员混合模型表明,在降雨事件期间,与火灾严重程度低的流域相比,火灾严重程度中低的流域在低连通性期间从土壤水和地下水输入的溪流更大。最后,在低流域连通性条件下,火灾严重程度对生物溶质浓度-排放关系的影响差异表现得最为明显。我们的研究提供了有关野火后对溪流水质影响的见解,目的是为今后有关低度、中度和混合严重程度野火对溪流化学反应的研究提供信息。
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Stream chemical response is mediated by hydrologic connectivity and fire severity in a Pacific Northwest forest

Large-scale wildfires are becoming increasingly common in the wet forests of the Pacific Northwest (USA), with predicted increases in fire prevalence under future climate scenarios. Wildfires can alter streamflow response to precipitation and mobilize water quality constituents, which pose a risk to aquatic ecosystems and downstream drinking water treatment. Research often focuses on the impacts of high-severity wildfires, with stream biogeochemical responses to low- and mixed-severity fires often understudied, particularly during seasonal shifts in hydrologic connectivity between hillslopes and streams. We studied the impacts of the 2020 Holiday Farm Fire at the HJ Andrews Experimental Forest where rare pre-fire stream discharge and chemistry data allowed us to evaluate the influence of mixed-severity fire on stream water quantity and quality. Our research design focused on two well-studied watersheds with low and low-moderate burn severity where we examined long-term data (pre- and post-fire), and instantaneous grab samples collected during four rain events occurring immediately following wildfire and a prolonged dry summer. We analysed the impact of these rain events, which represent the transition from low-to-high hydrologic connectivity of the subsurface to the stream, on stream discharge and chemistry behaviour. Long-term data revealed total annual flows and mean flows remained fairly consistent post-fire, while small increases in baseflow were observed in the low-moderately burned watershed. Stream water concentrations of nitrate, phosphate and sulfate significantly increased following fire, with variance in concentration increasing with fire severity. Our end member mixing models suggested that during rain events, the watershed with low-moderate severity fire had greater streamflow inputs from soil water and groundwater during times of low connectivity compared to the watershed with low severity fire. Finally, differences in fire severity impacts on concentration-discharge relationships of biogenic solutes were most expressed under low catchment connectivity conditions. Our study provides insights into post-wildfire impacts to stream water quality, with the goal of informing future research on stream chemistry responses to low, moderate and mixed severity wildfire.

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来源期刊
Hydrological Processes
Hydrological Processes 环境科学-水资源
CiteScore
6.00
自引率
12.50%
发文量
313
审稿时长
2-4 weeks
期刊介绍: Hydrological Processes is an international journal that publishes original scientific papers advancing understanding of the mechanisms underlying the movement and storage of water in the environment, and the interaction of water with geological, biogeochemical, atmospheric and ecological systems. Not all papers related to water resources are appropriate for submission to this journal; rather we seek papers that clearly articulate the role(s) of hydrological processes.
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