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Journal of environmental management. 2024 Nov:370:122445. doi: 10.1016/j.jenvman.2024.122445 Q18.42025

A geospatial approach to identifying and mapping areas of relative environmental pressure on ecosystem integrity

基于地理空间方法识别和制图生态系统完整性受相对环境压力的区域 翻译改进

Mina Nasr  1, John F Orwin  2

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作者单位

  • 1 Resource Stewardship Division, Ministry of Environment and Protected Areas, Government of Alberta, 3535 Research Road NW, Calgary AB, T2L 2K8, Canada; Department of Geography, University of Calgary, 2500 University Drive NW, Calgary AB, T2N1N4, Canada. Electronic address: mina.nasr@gov.ab.ca.
  • 2 Resource Stewardship Division, Ministry of Environment and Protected Areas, Government of Alberta, 3535 Research Road NW, Calgary AB, T2L 2K8, Canada.
  • DOI: 10.1016/j.jenvman.2024.122445 PMID: 39276654

    摘要 中英对照阅读

    The influence of increasing anthropogenic pressure on ecosystem integrity, such as land use change, is resulting in many ecosystems experiencing a decline in their ability to maintain balanced functions and services. Identifying and quantifying these pressures over different scales is challenging and thus impacting the achievement or maintenance of key environmental outcomes. In this study, a GIS-based and scalable tool was developed, the Relative Environmental Pressure (REP) Tool, to address these challenges. The REP tool combines an ecosystem integrity conceptual framework with a weighted linear combination analysis to quantify and rank relative environmental pressure across the scale of interest. The REP Tool was developed as an automated Python-based model in a PyCharm working environment using ArcGIS Pro Arcpy scripting. The REP Tool was applied to spatially contiguous geospatial data for the Province of Alberta, Canada and dynamically scaled relative to Hydrologic Unit Codes at level 8 (HUC8) along with regional and sub-regional scale sub-watersheds. Both cumulative and individual relative pressure levels were calculated and mapped for specific ecosystem integrity framework-derived Environmental Pressure Groups (EPGs) including Atmospheric Alteration, Sedimentation, Habitat Alteration, Hydrologic Alteration, and Social Pressure. Data driven Jenks natural breaks were then applied to classify the relative environmental pressures into a nine-level ranking system. The resulting visualization and data outputs from the REP Tool clearly show that the highest cumulative relative environmental pressure values align with the distribution of major population centres, zones of intense agriculture and major industrial activity. These regions reflect the physiography of Alberta with the Rocky Mountain and Boreal natural regions dominated by low relative environmental pressure. As scales become smaller and more refined, the location of the higher relative environmental pressure levels typically become more subdivided with greater spatial precision where higher pressured areas are located. These patterns are repeated when looking at individual EPGs but with enhanced differentiation of pressure as scales are refined. The framework and geospatial science driven approach behind the REP Tool can be universally applied to support enhanced understanding of relative environmental pressures in, or between regions, as well as informing adaptive environmental resource management and monitoring activities.

    Keywords: Adaptive management; Ecosystem impacts; Environmental monitoring; Scalability; Spatial assessment.

    Keywords:geospatial approach; environmental pressure; ecosystem integrity; mapping areas

    不断增加的人为压力(如土地利用变化)对生态系统完整性的影响,导致许多生态系统维持平衡功能和服务的能力下降。在不同尺度上识别和量化这些压力具有挑战性,并因此影响了关键环境成果的实现或维护。为此,在这项研究中开发了一个基于GIS且可扩展的工具——相对环境压力(REP)工具来解决这些问题。REP 工具结合生态系统的完整性概念框架与加权线性组合分析,以量化的和排名的方式评估感兴趣的尺度上的相对环境压力。该 REP 工具作为一个自动化的 Python 模型在 PyCharm 工作环境中使用 ArcGIS Pro 的 Arcpy 脚本开发而成。REP 工具应用于加拿大艾伯塔省的连续空间地理数据,并根据水文单位代码(HUC8)动态地进行尺度调整,同时还包括区域和次区域规模的流域。计算并绘制了特定生态系统完整性框架衍生的环境压力组(EPGs),其中包括大气变化、沉积物增加、栖息地改变、水文变化和社会压力的累积和单独的相对压力水平。然后应用数据驱动的 Jenks 自然断点方法,将相对环境压力分类为九级排名系统。从 REP 工具产生的可视化和数据输出清楚表明,最高的累积相对环境压力值与主要人口中心、集中的农业区和重要工业活动区分布一致。这些地区反映了艾伯塔省的地貌特征,落基山脉和北方森林自然区域的相对环境压力较低。随着尺度变得更小更精细,较高相对环境压力水平的位置通常会变得更加细分,并且具有更高的空间精度来定位高压力区域。当单独查看每个 EPG 时,这种模式也会重复出现,并且在尺度细化时压力量化的差异更为显著。REP 工具背后的框架和地理科学方法可以普遍应用于支持对地区内外相对环境压力的深入理解,以及为适应性环境资源管理和监测活动提供信息。

    关键词: 适应性管理;生态系统影响;环境监测;可扩展性;空间评估。

    关键词:地理空间方法; 环境压力; 生态系统完整性; 相对环境压力; 制图区域

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    期刊名:Journal of environmental management

    缩写:J ENVIRON MANAGE

    ISSN:0301-4797

    e-ISSN:1095-8630

    IF/分区:8.4/Q1

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    A geospatial approach to identifying and mapping areas of relative environmental pressure on ecosystem integrity