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Optimization method to construct micro-anaerobic digesters networks for decentralized biowaste treatment in urban and peri-urban areas

机译:构建城市及城郊地区分散式生物垃圾微厌氧消化池网络的优化方法

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Innovative small scale treatments solutions are currently proposed to handle the growing need of biowaste valorization through a more circular economy. These new approaches are designed to be embedded in a decentralized treatment scheme which raises new challenges for the biowaste management at the territorial scale. This study, aimed at developing a method to design decentralized and micro-scale Anaerobic Digestion (mAD) networks in urban and peri-urban areas. A mixed integer linear program (MILP) was set up to identify the number of mAD, their sites and their capacities in order to minimize the payload-distances of biowaste and digestate transportation while taking into account the technical constraints of the system. A Geographic Information System (GIS) methodology was developed to feed the MILP model with very fine-scale data about (1) the location and the characterization of the biowaste sources and of the digestate outlets (agricultural areas), and (2) the location of the potential sites for mAD based on a multi-criteria analysis that includes environmental regulations, urban planning rules, site accessibility and heat outlets for valorization. The method was applied to the territory of The Grand Lyon Metropole (534 km(2)) in France. Optimized mAD networks were identified through the MILP according to different scenarios tested. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:当前提出了创新的小规模处理解决方案,以通过更循环的经济来满足不断增长的生物废料增值需求。这些新方法旨在嵌入到分散式处理方案中,这在领土规模上对生物废物管理提出了新的挑战。这项研究旨在开发一种在城市和城市周边地区设计分散式和微型厌氧消化(mAD)网络的方法。建立了一个混合整数线性程序(MILP)来识别mAD的数量,其位点及其容量,以便在考虑到系统的技术约束的同时,最大程度地减少生物废物的有效载荷距离和消化运输。开发了一种地理信息系统(GIS)方法,以向MILP模型提供有关以下方面的非常精细的数据:(1)生物废料源和消化道(农业区域)的位置和特征,以及(2)位置基于多准则分析(包括环境法规,城市规划规则,场所可及性和用于增值的散热口)的mAD潜在场所。该方法已应用于法国大里昂大都会(534 km(2))的领土。通过MILP根据测试的不同场景确定了优化的mAD网络。 (C)2019作者。由Elsevier Ltd.发布

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