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Informing energy justice based decision-making framework for waste-to-energy technologies selection in sustainable waste management: A case of Iran

机译:为可持续废物管理中的废物转化能源技术选择提供基于能量正义的决策框架通知:以伊朗为例

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摘要

Due to problems such as limited land area for waste disposal and waste-borne diseases, waste management organizations have increasingly been offering technologies for recovering energy from waste. These technologies can help governments, local authorities, developers and investors for mitigating climate change and building sustainable societies. The suitable waste-to-energy production technology selection is a complex issue in waste supply chain management that must not only be assessed in terms of both socioeconomic and environmental criteria. With the purpose of balance between energy trilemma issues in the context of waste-to-energy generation and develop sustainable waste management strategies in the waste chain, energy justice criteria must also be taken into consideration. The paper considers the application of an integrated multi-criteria decision-making model consisting of fuzzy decision-making trail and evaluation laboratory method, the analytic network process and the simple additive weighting approaches. The integrated method can be applied to select the suitable technology in a sustainable manner, taking into account energy justice criteria. The applicability of proposed model is demonstrated by a case study of the technology selection in the city of Behbahan, Iran. It includes various technologies for waste-to-energy generation and ranks technologies from the most to least preferred as: Anaerobic digestion, Gasification, Pyrolysis, and Incineration. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于诸如废物处理的土地面积有限和废物传播的疾病等问题,废物管理组织越来越多地提供从废物中回收能量的技术。这些技术可以帮助政府,地方当局,开发商和投资者减轻气候变化和建设可持续发展的社会。在废物供应链管理中,适当选择废物转化为能源的生产技术是一个复杂的问题,不仅必须根据社会经济和环境标准对其进行评估。为了平衡废物转化为能源的能源三难问题之间的平衡,并在废物链中制定可持续的废物管理策略,还必须考虑能源正义标准。本文考虑了一个综合的多准则决策模型的应用,该模型包括模糊决策轨迹和评估实验室方法,分析网络过程和简单的加性加权方法。考虑到能源正义标准,可以采用集成方法以可持续的方式选择合适的技术。通过对伊朗Behbahan市的技术选择进行案例研究,证明了所提出模型的适用性。它包括用于废物转化为能源的各种技术,将技术从最不喜欢到最不喜欢的排名为:厌氧消化,气化,热解和焚化。 (C)2019 Elsevier Ltd.保留所有权利。

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