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对一系列河道和集水区变化的源头溪流中的生物地球化学功能指标进行调查。

Investigation of biogeochemical functional proxies in headwater streams across a range of channel and catchment alterations.

作者信息

Berkowitz Jacob F, Summers Elizabeth A, Noble Chris V, White John R, DeLaune Ronald D

机构信息

Wetlands and Coastal Ecology Branch, Engineer Research and Development Center, US Army Corps of Engineers, 3909 Halls Ferry Rd, Vicksburg, MS, 39180, USA,

出版信息

Environ Manage. 2014 Mar;53(3):534-48. doi: 10.1007/s00267-013-0199-1. Epub 2013 Dec 6.

Abstract

Historically, headwater streams received limited protection and were subjected to extensive alteration from logging, farming, mining, and development activities. Despite these alterations, headwater streams provide essential ecological functions. This study examines proxy measures of biogeochemical function across a range of catchment alterations by tracking nutrient cycling (i.e., inputs, processing, and stream loading) with leaf litter fall, leaf litter decomposition, and water quality parameters. Nutrient input and processing remained highest in second growth forests (the least altered areas within the region), while recently altered locations transported higher loads of nutrients, sediments, and conductivity. Biogeochemical functional proxies of C and N input and processing significantly, positively correlated with rapid assessment results (Pearson coefficient = 0.67-0.81; P = 0.002-0.016). Additionally, stream loading equations demonstrate that N and P transport, sediment, and specific conductivity negatively correlated with rapid assessment scores (Pearson coefficient = 0.56-0.81; P = 0.002-0.048). The observed increase in stream loading with lower rapid assessment scores indicates that catchment alterations impact stream chemistry and that rapid assessments provide useful proxy measures of function in headwater ecosystems. Significant differences in nutrient processing, stream loading, water quality, and rapid assessment results were also observed between recently altered (e.g., mined) headwater streams and older forested catchments (Mann-Whitney U = 24; P = 0.01-0.024). Findings demonstrate that biogeochemical function is reduced in altered catchments, and rapid assessment scores respond to a combination of alteration type and recovery time. An analysis examining time and economic requirements of proxy measurements highlights the benefits of rapid assessment methods in evaluating biogeochemical functions.

摘要

从历史上看,源头溪流受到的保护有限,并且因伐木、农业、采矿和开发活动而遭到广泛改变。尽管有这些改变,源头溪流仍提供重要的生态功能。本研究通过追踪落叶掉落、落叶分解和水质参数来研究养分循环(即输入、处理和溪流负荷),以此考察一系列集水区改变情况下生物地球化学功能的替代指标。养分输入和处理在次生林(该区域内受改变最少的区域)中仍然最高,而最近发生改变的地点输送了更高负荷的养分、沉积物和电导率。碳和氮输入与处理的生物地球化学功能替代指标与快速评估结果显著正相关(皮尔逊系数 = 0.67 - 0.81;P = 0.002 - 0.016)。此外,溪流负荷方程表明,氮和磷的输送、沉积物以及比电导率与快速评估得分呈负相关(皮尔逊系数 = 0.56 - 0.81;P = 0.002 - 0.048)。快速评估得分较低时溪流负荷增加,这表明集水区改变会影响溪流化学性质,并且快速评估为源头生态系统中的功能提供了有用的替代指标。在最近发生改变(如采矿)的源头溪流和较古老的森林集水区之间,还观察到养分处理、溪流负荷、水质和快速评估结果存在显著差异(曼 - 惠特尼U = 24;P = 0.01 - 0.024)。研究结果表明,在受到改变的集水区中生物地球化学功能会降低,快速评估得分会对改变类型和恢复时间的组合做出反应。一项考察替代测量的时间和经济要求的分析突出了快速评估方法在评估生物地球化学功能方面的优势。

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