Evaluating the landfill leachate quality using leachate pollution index (LPI) and technique for order preference by similarity to an ideal solution (TOPSIS)

I. Tałałaj, Sławomira Hajduk
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Abstract

Variability and diversity of landfill leachate cause difficulties in assessing the actual degree of threat to the environment and selecting an appropriate method of disposal or treatment. Therefore, quantifying leachate contamination potential is essential in landfill management and could be used to assess the accuracy of landfill operation and its impact on surrounding areas. The aim of this paper was to evaluate the performance of the Technique for Order Preference by Similarity to an Ideal Solution (TOPSIS) method and its suitability in determining leachate pollution potential in comparison to the Leachate Pollution Index (LPI) method. For this purpose, the quality of leachate from the landfill, collected four times a year from 2004 to 2021, was analysed. The following parameters were monitored: pH, EC, Pb, Cu, Zn, Cr, and Hg. On the basis of the measured parameters, the LPI and TOPSIS indexes were calculated. The obtained results indicated that the TOPSIS method is more sensitive and accurate in observing changes in leachate quality. It can be applied to any number of contaminant parameters without restrictions on scope, quantity, or their relative importance. It can also be used to compare the variations in leachate quality over time or to analyse differences in leachate quality among various landfill sites.
利用沥滤液污染指数(LPI)和理想解决方案相似性排序偏好技术(TOPSIS)评估垃圾填埋场沥滤液质量
垃圾填埋场渗滤液的多变性和多样性给评估其对环境的实际威胁程度以及选择适当的处置或处理方法造成了困难。因此,量化渗滤液污染潜力对垃圾填埋场管理至关重要,可用于评估垃圾填埋场运行的准确性及其对周边地区的影响。本文旨在评估 "与理想解相似的排序偏好技术(TOPSIS)"方法的性能,以及与 "渗滤液污染指数(LPI)"方法相比,该方法在确定渗滤液污染潜力方面的适用性。为此,对 2004 年至 2021 年期间每年收集四次的垃圾填埋场沥滤液的质量进行了分析。对以下参数进行了监测:pH 值、导电率、铅、铜、锌、铬和汞。在测量参数的基础上,计算了 LPI 和 TOPSIS 指数。结果表明,TOPSIS 方法在观察渗滤液质量变化方面更为灵敏和准确。它可以应用于任何数量的污染物参数,不受范围、数量或其相对重要性的限制。它还可用于比较沥滤液质量随时间的变化,或分析不同垃圾填埋场之间沥滤液质量的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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