Marinello Samuele, Gamberini Rita
En&Tech Interdepartmental Center, University of Modena and Reggio Emilia, Piazzale Europa 1, 42124 Reggio Emilia, Italy.
Department of Sciences and Methods for Engineering, University of Modena and Reggio Emilia, Via Amendola 2, Padiglione Morselli, 42122 Reggio Emilia, Italy.
Toxics. 2021 Jan 18;9(1):13. doi: 10.3390/toxics9010013.
The global demand for electrical and electronic equipment has undergone continuous growth in recent years due to the effect of industrialization and technological development. This indicates substantial quantities of e-waste that need to be managed properly to reduce their environmental impact and to avoid inappropriate forms of disposal. The purpose of this paper is to review the most popular multi-criteria decision-making approaches applied to the management of waste electrical and electronic equipment, analyzing how they are used to contribute to the improvement of management strategies along the entire supply chain. For this purpose, a methodological protocol for the collection, selection, and analysis of the scientific literature was applied, identifying 44 papers on which to conduct this study. The results showed that numerous authors have developed multi-criteria approaches, with particular attention to recycling phase. The analytic hierarchy process is the most widespread multi-criteria approach, often coupled with VIKOR, DELPHI, and TOPSIS methods. The numerous decision making criteria adopted cover different reference dimensions: environmental, economic, social, technical, and legal. Considering environmental aspects also in decision making processes means enhancing the relevance of this dimension, as well as encouraging practices that reduce the impact of toxic substances on the environment and living organisms.
近年来,受工业化和技术发展的影响,全球对电气和电子设备的需求持续增长。这意味着需要妥善管理大量电子垃圾,以减少其对环境的影响,并避免不当的处置方式。本文旨在回顾应用于废弃电气和电子设备管理的最流行的多标准决策方法,分析它们如何有助于改进整个供应链的管理策略。为此,应用了一种用于收集、选择和分析科学文献的方法协议,确定了44篇用于本研究的论文。结果表明,许多作者开发了多标准方法,尤其关注回收阶段。层次分析法是最广泛使用的多标准方法,常与VIKOR、德尔菲法和TOPSIS方法相结合。所采用的众多决策标准涵盖不同的参考维度:环境、经济、社会、技术和法律。在决策过程中考虑环境方面意味着增强这一维度的相关性,同时鼓励减少有毒物质对环境和生物体影响的做法。