基于多标准决策支持工具的橄榄厂污水处置土地适宜性评价

Dimitris Triantakonstantis, Spyridon E. Detsikas, V. Kavvadias, Zoi Papadopoulou, Panagiotis Sparangis, Nikolaos Katsenios, D. Vlachakis, Aspasia Efthimiadou
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引用次数: 2

摘要

由于选址和管理问题,许多现场废物处理系统经常出现故障。潜在的环境威胁不可避免地通过现场、场外、下游、土壤表面和地下水污染传播。土壤是决定土地是否适合处理废物的关键因素。本文提出了一种基于地理信息系统(GIS)的综合多标准决策支持系统,用于评价地中海地区橄榄厂废水处置的土地适宜性。开发了两个尺度的分类方案,希腊中部和南部的全球方案(比例:1:30.000)和希腊西部埃托利亚-阿卡纳尼亚州希罗梅罗研究区域的局部方案,比例:1:10.000。约束和因素被纳入空间决策框架,其中地统计学和模糊集理论技术,以及分析层次分析法(AHP)适当地集成。适应地中海土壤条件的物理、化学和社会经济变量被纳入土地适宜性评估的驱动力,绘制的地图为最终用户(如市政当局、农学家、农民和其他国家和地方利益相关者)揭示了有价值的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Land Suitability Assessment for Olive Mill Wastewater Disposal by Integrating Multicriteria Decision Support Tools
Many on-site waste disposal systems fail regularly due to problems concerning suitable location and management. A potential environmental threat is inevitably propagated through on-site, off-site, downstream, soil surface and ground water pollution. Soil is a key component of land suitability for waste disposal. This paper presents a Geographic Information Systems (GIS) – based integrated multicriteria decision support system for evaluating the land suitability for olive mill wastewater (OMWW) disposal in the Mediterranean region. Two-scaled classification schemes are developed, the global scheme for Central and South Greece (scale: 1:30.000) and the local scheme for the study area in Xiromero, Aetolia-Acarnania Prefecture, Western Greece, scale 1:10.000. Constrains and factors are included into the spatial decision-making framework, where geostatistical and fuzzy set theory techniques, as well as Analytical Hierarchy Process (AHP) are appropriately integrated. Physical, chemical, and socioeconomic variables adapted to the Mediterranean soil conditions are incorporated as driving forces for the land suitability assessment and the produced maps reveal valuable results for final end-users, such as municipal authorities, agriculturalists, farmers and other national and local stakeholders.
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