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Watershed-based water quality management.

机译:基于分水岭的水质管理。

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摘要

In response to landscape alteration and increased knowledge of environmental systems, government regulation for the protection of water quality has undergone several adaptations since the landmark Clean Water Act of 1972. Most recently, in 2000, USEPA moved its emphasis from an effluent-based approach to an ambient or watershed-based approach. Prior watershed studies have uncovered relationships between the type of land cover in a watershed and water quality. These studies have generally indicated correlations between urbanized watersheds and degradation of water quality and aquatic ecosystem health. This dissertation is both an extension of these previous studies to the area of water resource policy and regulation, and it is also a re-examination of the land use/land cover-water quality nexus in light of new high resolution landscape mapping for New Jersey based on recently collected aerial color-infrared orthophotography. Information and data for three watershed management areas (WMA) 1, 6, and 17 used for this study were extracted from high resolution land use mapping for 935 subwatershed assessment units in New Jersey and benthic macroinvertebrate sampling results for 775 sites across New Jersey are used to test the hypothesis that water quality assessment and management using a watershed approach is scale dependent. Statistical analysis indicates that water quality measured using a subwatershed assessment unit correlates to large scale land use patterns, but does not explain the variation of water quality with local land use/land cover. Results indicate that the application of spatial analysis techniques can inform the relationship between land use metrics and surface water quality impacts. Additionally, two case studies are examined using the relationships and metrics described above. The first case study provides an analysis of adaptive management for water quality restoration activities. The second case study indicates that recent regulatory changes in New Jersey to limit sewer service areas may be overly broad to ensure effective water quality improvement.
机译:为了应对景观变化和对环境系统的了解,自1972年具有里程碑意义的《清洁水法》以来,政府对水质保护的法规进行了几处修改。最近,在2000年,USEPA将重点从基于废水的方法转移到了基于环境或分水岭的方法。先前的流域研究发现了流域中的土地覆盖类型与水质之间的关系。这些研究通常表明城市化流域与水质退化和水生生态系统健康之间的相关性。本文既是对水资源政策和法规领域的先前研究的延伸,也是对新泽西州新的高分辨率景观制图的土地利用/土地覆盖水水质关系的重新检验。基于最近收集的航空彩色红外正射影像。从新泽西州935个小流域评估单位的高分辨率土地利用制图中提取了用于本研究的三个流域管理区(WMA)1、6和17的信息和数据,并使用了新泽西州775个地点的底栖大型无脊椎动物抽样结果检验使用分水岭方法进行水质评估和管理取决于规模的假设。统计分析表明,使用一个小流域评估单元测得的水质与大规模土地利用模式相关,但并未解释水质随当地土地利用/土地覆盖的变化。结果表明,空间分析技术的应用可以告知土地利用指标与地表水质量影响之间的关系。此外,使用上述关系和指标检查了两个案例研究。第一个案例研究提供了对水质恢复活动的适应性管理的分析。第二个案例研究表明,新泽西州最近为限制下水道服务区域而进行的法规变更可能过于广泛,无法确保有效改善水质。

著录项

  • 作者单位

    Montclair State University.;

  • 授予单位 Montclair State University.;
  • 学科 Water Resource Management.;Engineering Civil.;Environmental Management.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 211 p.
  • 总页数 211
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

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