Yilmaz Ozge, Kara Bahar Y, Yetis Ulku
Department of Environmental Engineering, Middle East Technical University, 06800, Ankara, Turkey.
Department of Industrial Engineering, Bilkent University, 06800, Ankara, Turkey.
J Environ Manage. 2017 Dec 1;203(Pt 2):720-731. doi: 10.1016/j.jenvman.2016.06.015. Epub 2016 Jun 29.
This paper presents a multi objective mixed integer location/routing model that aims to minimize transportation cost and risks for large-scale hazardous waste management systems (HWMSs). Risks induced by hazardous wastes (HWs) on both public and the environment are addressed. For this purpose, a new environmental impact definition is proposed that considers the environmentally vulnerable elements including water bodies, agricultural areas, coastal regions and forestlands located within a certain bandwidth around transportation routes. The solution procedure yields to Pareto optimal curve for two conflicting objectives. The conceptual model developed prior to mathematical formulation addresses waste-to-technology compatibility and HW processing residues to assure applicability of the model to real-life HWMSs. The suggested model was used in a case study targeting HWMS in Turkey. Based on the proposed solution, it was possible to identify not only the transportation routes but also a set of information on HW handling facilities including the types, locations, capacities, and investment/operational cost. The HWMS of this study can be utilized both by public authorities and private sector investors for planning purposes.
本文提出了一种多目标混合整数选址/路径模型,旨在使大规模危险废物管理系统(HWMS)的运输成本和风险最小化。文中探讨了危险废物(HW)对公众和环境造成的风险。为此,提出了一种新的环境影响定义,该定义考虑了环境脆弱要素,包括运输路线周围一定带宽范围内的水体、农业区、沿海地区和林地。求解过程得出了两个相互冲突目标的帕累托最优曲线。在进行数学公式化之前开发的概念模型考虑了废物与技术的兼容性以及危险废物处理残渣,以确保该模型适用于实际的危险废物管理系统。所建议的模型在针对土耳其危险废物管理系统的案例研究中得到了应用。基于所提出的解决方案,不仅可以确定运输路线,还可以获取一组关于危险废物处理设施的信息,包括类型、位置、容量以及投资/运营成本。本研究的危险废物管理系统可供公共当局和私营部门投资者用于规划目的。