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首页> 外文期刊>Ecological indicators >Land use disturbance indicators and water quality variability= in the Biscayne Bay Watershed, Florida
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Land use disturbance indicators and water quality variability= in the Biscayne Bay Watershed, Florida

机译:佛罗里达州比斯坎湾流域的土地利用干扰指标和水质变异性=

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摘要

Rapid land use transformations due to extensive agricultural and urban development in south Florida (USA) threaten water resources such as Biscayne Bay, an oligotrophic estuary draining the Miami metropolitan complex and South Dade Agricultural Area. Biscayne Bay is sensitive to nutrient inputs and this study evaluated watershed land use-water quality relationships from 1995 to 2004. Using eight monitoring sites, three spatial extents were considered: sub-basins, canal buffers, and site buffers. Selected sites represented agricultural, urban, and mixed land use classes. Disturbance indicators (landscape metrics; Landscape Development Intensity (LDI) index; percent imperviousness), nutrient loads (nitrateitrite-nitrogen (NO_x-N); total ammonia nitrogen (NH_x-N); total phosphorus (TP)), and multi-variate regression models were used to determine land use factors influencing water quality variability. The sub-basin regression model was the best predictor of annual NO_x-N loads in the watershed. Both LDI and largest patch index variables were included in this model, indicating that the relative distribution of dominant land use classes influences NO_x-N loads. There were no significant regression models for total inorganic nitrogen (NOx-N plus NH3-N) loads. Total phosphorus loads were more closely related to disturbance indicators at a smaller spatial extent (1000 m canal buffer), which is a function of watershed nutrient transport processes. The relative proportion of directly connected impervious areas (DCIA) was not identified as a significant land use variable for regression models. Positive correlations between LDI and DCIA values suggested both indicators provided similar information regarding the intensity of human disturbance. However, the LDI index incorporates anthropogenic intensity associated with a broad range of land uses while DCIA primarily reflects the impact of watershed urbanization. Watershed managers can use the LDI index with landscape metrics that evaluate spatial patterns to link land use development to water quality parameters.
机译:由于美国南佛罗里达州广泛的农业和城市发展而导致的快速土地利用变化,威胁着比斯坎湾(Biscayne Bay)之类的水资源,比斯坎湾(Biscayne Bay)是一条贫瘠的河口,流失了迈阿密大都市区和南达德农业区。比斯坎湾对养分输入敏感,这项研究评估了1995年至2004年流域土地利用与水质之间的关系。使用八个监测点,考虑了三个空间范围:子流域,运河缓冲区和站点缓冲区。选定的地点代表了农业,城市和混合土地使用类别。干扰指标(景观指标;景观发展强度(LDI)指数;不透水百分比),养分负荷(硝酸盐/亚硝酸盐氮(NO_x-N);总氨氮(NH_x-N);总磷(TP))和多种变量回归模型用于确定影响水质变异性的土地利用因素。次流域回归模型是分水岭年度NO_x-N负荷的最佳预测指标。该模型同时包括LDI和最大斑块指数变量,表明主要土地利用类别的相对分布会影响NO_x-N负荷。对于总无机氮(NOx-N加NH3-N)负荷,没有显着的回归模型。在较小的空间范围(1000 m的运河缓冲区)中,总磷负荷与干扰指标更密切相关,这是流域养分迁移过程的函数。直接连接的防渗区(DCIA)的相对比例未确定为回归模型的重要土地使用变量。 LDI与DCIA值之间存在正相关关系,这表明两个指标都提供了有关人为干扰强度的相似信息。但是,LDI指数包含了与广泛土地利用相关的人为强度,而DCIA主要反映了流域城市化的影响。流域管理者可以将LDI指数与景观指标结合使用,以评估空间格局,将土地利用的发展与水质参数联系起来。

著录项

  • 来源
    《Ecological indicators》 |2011年第5期|p.1093-1104|共12页
  • 作者单位

    School of Natural Resources and Environment, Tropical Research and Education Center, University of Florida, 18905 SW 280th Street, Homestead, FL 33031-3314, USA;

    Agricultural and Biological Engineering, Tropical Research and Education Center, University of Florida, 18905 SW 280th Street, Homestead. FL 33031-3314, USA;

    Soil and Water Science, Tropical Research and Education Center, University of Florida, 18905 SW 280th Street, Homestead, FL 33031-3314, USA;

    Horticultural Sciences, Tropical Research and Education Center, University of Florida, 18905 SW 280th Street, Homestead, FL 33031 -3314, USA;

    Agricultural and Biological Engineering, University of Florida, P.O. Box 110570, Gainesville, FL 32611-0570, USA;

    Environmental Engineering Sciences, Howard T. Odum Center for Wetlands, University of Florida, P.O. Box 116350, Gainesville, FL 32611-6350, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biscayne bay; land use/land cover; landscape metrics; LDiindex; imperviousness; water quality;

    机译:比斯坎湾;土地利用/土地覆盖;景观指标;LDiindex;不透水水质;

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