Polat Sener, Aksoy Aysegul, Unlu Kahraman
Department of Environmental Engineering, Middle East Technical University, 06800 Ankara, Turkey.
Ground Water. 2015 Mar-Apr;53(2):317-27. doi: 10.1111/gwat.12199. Epub 2014 May 19.
Contaminated site remediation is generally difficult, time consuming, and expensive. As a result ranking may aid in efficient allocation of resources. In order to rank the priorities of contaminated sites, input parameters relevant to contaminant fate and transport, and exposure assessment should be as accurate as possible. Yet, in most cases these parameters are vague or not precise. Most of the current remediation priority ranking methodologies overlook the vagueness in parameter values or do not go beyond assigning a contaminated site to a risk class. The main objective of this study is to develop an alternative remedial priority ranking system (RPRS) for contaminated sites in which vagueness in parameter values is considered. RPRS aims to evaluate potential human health risks due to contamination using sufficiently comprehensive and readily available parameters in describing the fate and transport of contaminants in air, soil, and groundwater. Vagueness in parameter values is considered by means of fuzzy set theory. A fuzzy expert system is proposed for the evaluation of contaminated sites and a software (ConSiteRPRS) is developed in Microsoft Office Excel 2007 platform. Rankings are employed for hypothetical and real sites. Results show that RPRS is successful in distinguishing between the higher and lower risk cases.
污染场地修复通常困难、耗时且成本高昂。因此,进行排名有助于资源的有效分配。为了对污染场地的优先级进行排序,与污染物归宿和迁移以及暴露评估相关的输入参数应尽可能准确。然而,在大多数情况下,这些参数是模糊或不精确的。当前大多数修复优先级排序方法忽略了参数值的模糊性,或者只是将污染场地归入某个风险类别。本研究的主要目的是开发一种替代的污染场地修复优先级排序系统(RPRS),该系统考虑了参数值的模糊性。RPRS旨在通过使用足够全面且易于获取的参数来描述空气、土壤和地下水中污染物的归宿和迁移,从而评估污染造成的潜在人体健康风险。通过模糊集理论来考虑参数值的模糊性。提出了一个用于评估污染场地的模糊专家系统,并在Microsoft Office Excel 2007平台上开发了一个软件(ConSiteRPRS)。对假设场地和实际场地进行了排名。结果表明,RPRS能够成功区分高风险和低风险情况。