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Relationships between indicators of acid-base chemistry and fish assemblages in streams of the Great Smoky Mountains National Park

机译:大雾山国家公园溪流中酸碱化学指示剂与鱼群的关系

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摘要

The acidity of many streams in the Great Smoky Mountains National Park (GRSM) has increased significantly since pre-industrial (similar to 1850) times due to the effects of highly acidic atmospheric deposition in poorly buffered watersheds. Extensive stream-monitoring programs since 1993 have shown that fish and macroinvertebrate assemblages have been adversely affected in many streams across the GRSM. Matching chemistry and fishery information collected from 389 surveys performed at 52 stream sites over a 22-year period were assessed using logistic regression analysis to help inform the U.S. Environmental Protection Agency's assessment of the environmental impacts of emissions of oxides of nitrogen (NO.) and sulfur (SO,). Numerous logistic equations and associated curves were derived that defined the relations between acid neutralizing capacity (ANC) or pH and different levels of community richness, density, and biomass; and density and biomass of brook trout, rainbow trout, and small prey (minnow) populations in streams of the GRSM. The equations and curves describe the status of fish assemblages in the GRSM under contemporary emission levels and deposition loads of nitrogen (N) and sulfur (S) and provide a means to estimate how newly proposed (and various alternative) target deposition loads, which strongly influence stream ANC, might affect key ecological indicators. Several examples using ANC, community richness, and brook trout density are presented to illustrate the steps needed to predict how future changes in stream chemistry (resulting from different target deposition loads of N and S) will affect the probabilities of observing specific levels of selected biological indicators in GRSM streams. The implications of this study to the regulation of NO and SO, emissions, water quality, and fisheries management in streams of the GRSM are discussed, but also qualified by the fact that specific examples provided need to be further explored before recommendations concerning their use as ecological indicators could be proposed.
机译:自工业化前(类似于1850年)以来,大雾山国家公园(GRSM)中许多溪流的酸度已显着增加,这是由于缓冲性差的流域中的高酸性大气沉积所致。自1993年以来,广泛的河流监测计划表明,鱼类和大型无脊椎动物种群在整个GRSM的许多河流中都受到了不利影响。使用Logistic回归分析评估了在22年间从52个溪流场进行的389次调查中收集的化学和渔业信息的匹配,以进行逻辑回归分析,以帮助美国环境保护局评估氮氧化物(NO。)和氮氧化物排放对环境的影响硫(SO,)。推导了许多逻辑方程和相关曲线,这些方程定义了酸中和能力(ANC)或pH与不同水平的群落丰富度,密度和生物量之间的关系。 GRSM河中溪鳟,虹鳟和小型猎物(min鱼)的密度和生物量。这些方程式和曲线描述了现代排放水平和氮(N)和硫(S)沉积负荷下GRSM中鱼群的状态,并提供了一种方法来估算新提出的目标沉积负荷(以及各种替代目标)影响流ANC,可能会影响关键的生态指标。给出了几个使用ANC,社区富裕度和河鳟密度的示例,以说明预测流态化学的未来变化(由N和S的不同目标沉积负荷产生)如何影响观察选定生物水平的概率所需的步骤。 GRSM流中的指标。讨论了这项研究对GRSM流中NO和SO,排放,水质和渔业管理的规定的意义,但同时也得到了以下事实的认可:在提出有关其用途的建议之前,需要进一步探讨所提供的具体实例。可以提出生态指标。

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